Heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid
The present invention relates to a device, which is composed of one or more parallel or quasi-parallel installed fluid piping by series connection or parallel, every piping is specifically distributed by one or more double-scroll arrangement for transmitting thermal conductive fluid, and the double-scroll fluid piping constitutes fluid flow uniformly distributed by temperature difference.
(a) Field of the Invention
The present invention relates to the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, which is composed of one or more parallel or quasi-parallel installed fluid piping by series connection or parallel, and every piping is specifically distributed by one or more double-scroll arrangement for transmitting thermal conductive fluid with temperature difference constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid, by way of double-scroll fluid piping constituting for fluid flow uniformly distributed by temperature difference, the fluids passing through neighboring piping flow reversely, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space thereby forming a more uniform temperature distribution status on the passively heat dissipation or absorption receiving article or space.
(b) Description of the Prior
For the conventional heat absorbing or dissipating devices by passing through thermal conductive fluid as the heat absorbing or dissipating body constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid such as engine cooling water radiators, heat absorbing cooling energy discharge devices utilizing thermal conductive fluid, or heat dissipating warming energy discharge devices such as warming devices, heaters, or the warming energy transfer device, as the flow direction of the thermal conductive fluid is fixed, larger temperature difference is formed between different positions on the heat absorbing or dissipating body of the thermal conductive fluid.
SUMMARY OF THE INVENTIONThe present invention relates to the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, which is composed of one or more parallel or quasi-parallel installed fluid piping by series connection or parallel, and every piping is specifically distributed by one or more double-scroll arrangement for transmitting thermal conductive fluid with temperature difference constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid.
- 100: Heat absorbing or dissipating thermal energy transmission body
- 100′: Piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid
- 101: Fluid piping
- 103: Piping steering structure
- 110: Thermal conductive fluid
- 111: Fluid inlet
- 112: Fluid outlet
- 200: Passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space
- 300: Independent thermal conductive plate
- 350: Thermal conductive plate with temperature insulating slots
- 400: Common thermal conductive plate
- 500: Control device
- 600: Two-way movement of fluid pumping device
Aiming to above the phenomenon, the present invention innovatively discloses a heat absorbing or dissipating device by thermal conductive fluid passing through, wherein the piping with double-scroll arrangement transmits the temperature difference fluids in different flow directions by temperature difference, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space thereby forming a more uniform temperature distribution status on the passively heat dissipation or absorption receiving article or space.
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- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 can be one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, and piping steering structure 103 is piping near the center of the scroll with reverse turn for transmitting fluid, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
the fluid piping 101 is constituted by one or more piping by series connection or parallel, and every piping is distributed by one or more double-scroll arrangement for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and
the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
The structural relationships between the heat absorbing or dissipating thermal energy transmission body 100 and the fluid piping 101 as shown in
(1) the heat absorbing or dissipating thermal energy transmission body 100 is in an assembled structure with the fluid piping 101;
(2) the heat absorbing or dissipating thermal energy transmission body 100 is in an integral structure with the fluid piping 101;
(3) the function of the heat absorbing or dissipating thermal energy transmission body 100 is directly provided by the fluid piping 101;
(4) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the fluid piping 101 additionally installed with independent thermal conductive plate 300 which does not connect with the neighboring piping;
(5) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by common thermal conductive plate 400 connected between the neighboring fluid piping 101; and
(6) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by thermal conductive plate 350 with temperature insulating slots connected between the neighboring fluid piping 101.
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- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 can be one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is the piping steering structure 103, and the fluid piping near the center of the scroll with reverse turn for transmitting fluid is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
the fluid piping 101 is constituted by one or more series connection or parallel fluid piping with one or more double-scroll arrangement distributed for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and
the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
The structural relationships between the heat absorbing or dissipating thermal energy transmission body 100 and the fluid piping 101 as shown in
(1) the heat absorbing or dissipating thermal energy transmission body 100 is in an assembled structure with the fluid piping 101;
(2) the heat absorbing or dissipating thermal energy transmission body 100 is in an integral structure with the fluid piping 101;
(3) the function of the heat absorbing or dissipating thermal energy transmission body 100 is directly provided by the fluid piping 101;
(4) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the fluid piping 101 additionally installed with the independent thermal conductive plate 300 which does not connect with the neighboring piping;
(5) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the common thermal conductive plate 400 connected between the neighboring fluid piping 101; and
(6) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the thermal conductive plate 350 with temperature insulating slots connected between the neighboring fluid piping 101.
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- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 can be one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is the piping steering structure 103, the piping near the middle part of the lateral of the piping with double-scroll arrangement is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, and the piping steering structure 103 is piping placed at the most lateral and near the center of the scroll with reverse turn for transmitting fluid, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
the fluid piping 101 is constituted by one or more series connection or parallel fluid piping with one or more double-scroll arrangement distributed for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and
the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
The structural relationships between the heat absorbing or dissipating thermal energy transmission body 100 and the fluid piping 101 as shown in
(1) the heat absorbing or dissipating thermal energy transmission body 100 is in an assembled structure with the fluid piping 101;
(2) the heat absorbing or dissipating thermal energy transmission body 100 is in an integral structure with the fluid piping 101;
(3) the function of the heat absorbing or dissipating thermal energy transmission body 100 is directly provided by the fluid piping 101;
(4) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the fluid piping 101 additionally installed with the independent thermal conductive plate 300 which does not connect with the neighboring piping;
(5) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the common thermal conductive plate 400 connected between the neighboring fluid piping 101; and
(6) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the thermal conductive plate 350 with temperature insulating slots connected between the neighboring fluid piping 101.
For the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, beside of transferring thermal energy via the heat absorbing or dissipating thermal energy transmission body 100, the fluid piping 101 can be parallel or quasi-parallel distributed in a plane structure or three-dimensional structure to directly constitute structural body for the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passing through to directly perform heat dissipating warming energy discharge or heat absorbing cooling energy discharge on passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
By way of the fluid piping 101 transmitting the thermal conductive fluid 110, the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure to constitute a common structural body, in which the common structural body with uniformly distributed whole temperature performs heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
For the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the structural relationships between the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 and the heat absorbing or dissipating thermal energy transmission body 100 include that the fluid piping 101 and the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 directly construct the common structural body, and transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, in which:
the relevant fluid piping is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure to constitute the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ in place of the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
by way of the fluid piping 101 transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid, the heat absorbing or dissipating thermal energy transmission body 100 transmits thermal energy, thus the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ passively receives heat absorption or dissipation.
As the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, for further improving effects of heat absorption or dissipation, the independent thermal conductive plate 300 is additionally installed at the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′, so as to improve effects of heat absorption or dissipation.
As the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, for further improving effects of heat absorption or dissipation, the common thermal conductive plate 400 is installed at the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′, so as to improve effects of heat absorption or dissipation.
As the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, in order to give consideration to structure stability, process, and the need for functionality of independent temperature guiding, the thermal conductive plate 350 with temperature insulating slots further can be additionally installed between the fluid piping 101 to increase effects of heat absorption or dissipation.
As the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the fluid passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ can be controlled by control device 500 to drive two-way movement of fluid pumping device 600 for periodic forward/reverse pumping operation, to periodically forward/reverse pump the thermal conductive fluid 110, and to improve effects of uniform temperature.
The two-way movement of fluid pumping device 600 is used for periodic forward/reverse pumping under the control of control device 500 composed of electromechanical device, electronic device, or microcomputer and related software.
For applications of the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, one or more methods based afore the operating principles according to application structural needs and cost considerations can be used to make the following designs, including:
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- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 can be constituted by an integral type structure;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 can be constituted by an assembled structure;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 can be constituted by the structural unit of the single structural body in plate, block, or multi-fins shape, or the structural unit assembled by fins, and can be constituted by at least one structural unit, as needed;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, which is composed of one or more units of the fluid piping, and the combinations of fluid piping subordinated to every unit are through series connection, or parallel, or series-parallel connection to be various geometric shapes;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the thermal conductive fluid 110 passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ can be transported by pumping, evaporation, or heat-cold natural circulation;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the warming or cooling energy is discharged to the liquid state passively heat dissipation or absorption receiving article or space 200 through using the cold-heat natural convection of fluid in temperature difference and/or forced fluid pumping to generate thermal transfer function of convection, and/or radiation, and/or conduction; or the warming or cooling energy is discharged to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 through conduction;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the thermal conductive fluid 110 passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ is closed-loop circulated or open-loop released;
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, the fluid inlets and the fluid outlets of the various fluid piping can be installed with same or different pointing direction within three-dimensional space; and
- for the heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, there are various installation modes of the fluid piping, including that the fluid piping is composed of tubular structure, and/or the fluid piping is composed of plate sheet structure for fluid flow, and/or the pore-like fluid piping is composed of blocky structure for fluid flow.
The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid can be applied for various heat absorbing, or dissipating, or cooling heat conducting application devices, such as the cooling water radiators of the engine, or cooling energy discharge device using thermal conductive fluid for heat absorbing, or warming energy discharge device using thermal conductive fluid for heat dissipating, such as thermal energy transfer for warming equipments, heater or thermal energy transfer devices, or heating or cooling for ceilings, walls or floors of the buildings, or cooling of photovoltaic panels, or heating or cooling for electrical machine or power machineries, or heat absorption and dissipation of various machine casings, heat pipe structures, structure casings, various chips or semiconductor components, ventilation devices, or the heat absorption, heat dissipation or thermal energy transfer for information, audio, image devices, various lamp or LED devices, or the heat absorption of the evaporator or heat dissipation or thermal energy transfer of condensers of air conditioning devices, or thermal energy transfer of mechanical devices, or heat dissipation of frictional heat loss, or heat dissipation or thermal energy transfer of electric heater or other electric heating home appliances or cooking devices, or heat absorption or thermal energy transfer of flame heating stoves or cooking devices, or heat absorption, heat dissipation or thermal energy transfer of earth layer or water thermal energy, plant or housing building or building material or building structure devices, heat absorbing or dissipation of water tower, or heat absorption, heat dissipation or thermal energy transfer of batteries or fuel cells; and
applied for thermal energy transfer in home appliances, industrial products, electronic products, electrical machines or mechanical devices, power generation equipments, buildings, air conditioning devices, industrial equipments or industrial manufacturing process.
Claims
1. A heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid, wherein the device is composed of one or more parallel or quasi-parallel installed piping by series connection or parallel, and every piping is specifically distributed by one or more double-scroll arrangement for transmitting thermal conductive fluid with temperature difference constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid, by way of double-scroll fluid piping constituting for fluid flow uniformly distributed by temperature difference, the fluids passing through neighboring piping flow reversely, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space thereby forming a more uniform temperature distribution status on the passively heat dissipation or absorption receiving article or space, the main components including: the fluid piping 101 is constituted by one or more piping by series connection or parallel, and every piping is distributed by one or more double-scroll arrangement for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 is one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, and piping steering structure 103 is piping near the center of the scroll with reverse turn for transmitting fluid, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
2. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the structural relationships between the heat absorbing or dissipating thermal energy transmission body 100 and the fluid piping 101 are constituted by one or more relationships as following, including:
- (1) the heat absorbing or dissipating thermal energy transmission body 100 is in an assembled structure with the fluid piping 101;
- (2) the heat absorbing or dissipating thermal energy transmission body 100 is in an integral structure with the fluid piping 101;
- (3) the function of the heat absorbing or dissipating thermal energy transmission body 100 is directly provided by the fluid piping 101;
- (4) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by the fluid piping 101 additionally installed with independent thermal conductive plate 300 which does not connect with the neighboring piping;
- (5) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by common thermal conductive plate 400 connected between the neighboring fluid piping 101; and
- (6) the function of the heat absorbing or dissipating thermal energy transmission body 100 is provided by thermal conductive plate 350 with temperature insulating slots connected between the neighboring fluid piping 101.
3. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the further structure including: the fluid piping 101 is constituted by one or more series connection or parallel fluid piping with one or more double-scroll arrangement distributed for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 is one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is the piping steering structure 103, and the fluid piping near the center of the scroll with reverse turn for transmitting fluid is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
4. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the further structure including: the fluid piping 101 is constituted by one or more series connection or parallel fluid piping with one or more double-scroll arrangement distributed for transmitting the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping 101, and the thermal conductive fluids 110 passing through the neighboring fluid piping 101 with reverse flow directions, so as to transmit thermal energy to the heat absorbing or dissipating thermal energy transmission body 100 made of thermal conductive material in solid, or colloid, or liquid, or gaseous state; and the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure in the heat absorbing or dissipating thermal energy transmission body 100 for performing heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
- Heat absorbing or dissipating thermal energy transmission body 100: made of thermal conductive material in solid, or colloid, or liquid, or gaseous state for receiving the thermal energy of the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid inside the combined fluid piping 101 with double-scroll arrangement transmitting the temperature difference fluids in different flow directions by temperature difference, so as to perform heat absorbing cooling energy discharge operating function or heat dissipating warming energy discharge operating function onto the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, wherein the number of the heat absorbing or dissipating thermal energy transmission bodies 100 is one or more than one; and
- Fluid piping 101: made of good thermal conductive material, wherein the fluid piping 101 is parallel or quasi-parallel double-scroll piping structure, and the arrangement of the double-scroll piping structure is placed with the neighboring piping with temperature difference for transmitting the temperature difference fluids in different flow directions, thus the thermal conductive fluid forms a more uniform temperature distribution status on heat absorption or dissipation body, so as to produce heat absorbing or dissipating function onto the passively heat dissipation or absorption receiving article or space; it is characterized by that the outer of the piping with double-scroll arrangement is the piping steering structure 103, the piping near the middle part of the lateral of the piping with double-scroll arrangement is end side of the piping inlet and outlet installed with fluid inlet 111 and fluid outlet 112, and the piping steering structure 103 is piping placed at the most lateral and near the center of the scroll with reverse turn for transmitting fluid, thus the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passes through the fluid inlet 111 and the fluid outlet 112 placed at both ends of the fluid piping and the fluids passing through neighboring piping with reverse flow directions, so as to through the heat absorbing or dissipating thermal energy transmission body 100 transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200; and
5. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein beside of transferring thermal energy via the heat absorbing or dissipating thermal energy transmission body 100, the fluid piping 101 is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure to directly constitute structural body for the thermal conductive fluid 110 constituted by gaseous or liquid state fluid, gaseous to liquid state fluid, or liquid to gaseous state fluid passing through to directly perform heat dissipating warming energy discharge or heat absorbing cooling energy discharge on passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
6. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the structural relationships between the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 and the heat absorbing or dissipating thermal energy transmission body 100 include that the fluid piping 101 and the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 directly construct the common structural body, and transmit thermal energy to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200, in which:
- the relevant fluid piping is parallel or quasi-parallel distributed in a plane structure or three-dimensional structure to constitute the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ in place of the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200.
7. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the independent thermal conductive plate 300, and/or the common thermal conductive plate 400, and/or the thermal conductive plate with temperature insulating slots 350 are additionally installed at the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′, so as to improve effects of heat absorption or dissipation.
8. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the fluid passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ are controlled by control device 500 to drive two-way movement of fluid pumping device 600 for periodic forward/reverse pumping operation, to periodically forward/reverse pump the thermal conductive fluid 110, and to improve effects of uniform temperature; and
- the two-way movement of fluid pumping device 600 is used for periodic forward/reverse pumping under the control of control device 500 composed of electromechanical device, electronic device, or microcomputer and related software.
9. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 are constituted by an integral type structure.
10. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 are constituted by an assembled structure.
11. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ and the heat absorbing or dissipating thermal energy transmission body 100 are constituted by the structural unit of the single structural body in plate, block, or multi-fins shape, or the structural unit assembled by fins, and are constituted by at least one structural unit, as needed.
12. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the device is composed of one or more units of the fluid piping, and the combinations of fluid piping subordinated to every unit are through series connection, or parallel, or series-parallel connection to be various geometric shapes.
13. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the thermal conductive fluid 110 passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ is transported by pumping, evaporation, or heat-cold natural circulation.
14. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the warming or cooling energy is discharged to the liquid state passively heat dissipation or absorption receiving article or space 200 through using the cold-heat natural convection of fluid in temperature difference and/or forced fluid pumping to generate thermal transfer function of convection, and/or radiation, and/or conduction; or the warming or cooling energy is discharged to the passively heat dissipation or absorption receiving article in solid, or colloid, or liquid, or gaseous state or space 200 through conduction.
15. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the thermal conductive fluid 110 passing through the fluid piping 101 and/or the piping structural body transmitting the passively receiving heat absorbing or dissipating thermal conductive fluid 100′ is closed-loop circulated or open-loop released.
16. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the fluid inlets and the fluid outlets of the various fluid piping are installed with same or different pointing direction within three-dimensional space.
17. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein there are various installation modes of the fluid piping, including that the fluid piping is composed of tubular structure, and/or the fluid piping is composed of plate sheet structure for fluid flow, and/or the pore-like fluid piping is composed of blocky structure for fluid flow.
18. The heat absorbing or dissipating device with double-scroll piping transmitting temperature difference fluid as claimed in claim 1, wherein the device is applied for various heat absorbing, or dissipating, or cooling heat conducting application devices, such as the cooling water radiators of the engine, or cooling energy discharge device using thermal conductive fluid for heat absorbing, or warming energy discharge device using thermal conductive fluid for heat dissipating, such as thermal energy transfer for warming equipments, heater or thermal energy transfer devices, or heating or cooling for ceilings, walls or floors of the buildings, or cooling of photovoltaic panels, or heating or cooling for electrical machine or power machineries, or heat absorption and dissipation of various machine casings, heat pipe structures, structure casings, various chips or semiconductor components, ventilation devices, or the heat absorption, heat dissipation or thermal energy transfer for information, audio, image devices, various lamp or LED devices, or the heat absorption of the evaporator or heat dissipation or thermal energy transfer of condensers of air conditioning devices, or thermal energy transfer of mechanical devices, or heat dissipation of frictional heat loss, or heat dissipation or thermal energy transfer of electric heater or other electric heating home appliances or cooking devices, or heat absorption or thermal energy transfer of flame heating stoves or cooking devices, or heat absorption, heat dissipation or thermal energy transfer of earth layer or water thermal energy, plant or housing building or building material or building structure devices, heat absorbing or dissipation of water tower, or heat absorption, heat dissipation or thermal energy transfer of batteries or fuel cells; and
- applied for thermal energy transfer in home appliances, industrial products, electronic products, electrical machines or mechanical devices, power generation equipments, buildings, air conditioning devices, industrial equipments or industrial manufacturing process.
Type: Application
Filed: Oct 22, 2009
Publication Date: Apr 28, 2011
Inventor: Tai-Her Yang (Dzan-Hwa)
Application Number: 12/588,635
International Classification: F28D 1/047 (20060101);