Patents Issued in November 15, 2016
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Patent number: 9494315Abstract: The invention relates to a method for chemical-looping combustion of a solid hydrocarbon-containing feedstock, wherein the ashes and fines are removed at the outlet of reactive oxidation zone R1 by sending transported phase (5) coming from reactive zone R1, comprising gas and solid, to a gas-solid separation zone S2, then by sending solid stream (7) coming from gas-solid separation zone S2 to a dense phase elutriation separation zone S3 fluidized by a non-reducing gas (8) allowing the fines and the fly ashes to be separated from the oxygen-carrying material particles. Optionally, deeper separation is carried out in a dedusting zone S5 arranged downstream from dense phase elutriation separation zone S3. The invention also relates to a chemical-looping combustion plant allowing the method according to the invention to be implemented.Type: GrantFiled: October 29, 2012Date of Patent: November 15, 2016Assignees: TOTAL SA, IFP ENERGIES NOUVELLESInventors: Florent Guillou, Thierry Gauthier, Ali Hoteit, Sebastien Rifflart
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Patent number: 9494316Abstract: A heating device (100) for combustion of liquid fuels comprises at least one catalytic element (140) for catalytically burning a mixture of fuel and air, a fuel supply means (133) being disposed on an upstream side of said first catalytic element (140) and an air supply means (132) being disposed on an upstream side of said at least one catalytic element (140). A fuel-evaporating device (130) has a substantially axisymmetric shape and an upstream end and a downstream end. The fuel-evaporating device is heated, during operation, by the at least one catalytic element (140), and is supplied with fuel and air from the fuel supply means (133) and the air supply means (132). The heating device also comprises an outer housing (110), for containing said catalytic element (140) and said fuel-evaporating device (130). The fuel-evaporating device (130) is provided with at least one inner inlet pipe (132; 132b) in the generally upstream end thereof.Type: GrantFiled: January 7, 2008Date of Patent: November 15, 2016Assignee: ZEmission ABInventor: Anders Vestin
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Patent number: 9494317Abstract: An charge element disposed proximate to a combustion reaction is caused to carry a voltage while also being prevented from arc-discharging or arc-charging to or from the combustion reaction, by a current limiting element in electrical continuity with the charge element.Type: GrantFiled: March 10, 2015Date of Patent: November 15, 2016Assignee: CLEARSIGN COMBUSTION CORPORATIONInventors: Igor A. Krichtafovitch, Christopher A. Wiklof
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Patent number: 9494318Abstract: A device for cleaning a chimney preferably includes a rod assembly, cleaning arms, fan blades, a camera, and a stabilizing/positioning assembly. The cleaning arms are provided on an assembly that includes a rotatable hub with the cleaning arms extending from the hub. The fan blades may also extend from the hub or they may be provided separately. The camera is continuously rotatable around the longitudinal axis to allow an uninterrupted 360° scan of the chimney. The stabilizing/positioning assembly is effective to position the cleaning assembly hub a pre-selected stabilizing/positioning distance from an interior wall of a chimney while the hub rotates in the chimney. The cleaning and fan hub(s) is driven by a cable surrounded by a casing that allows the cable to rotate in the casing without rotating the casing. Controls allow the operator to control the speed and direction of the cleaning arms and the camera.Type: GrantFiled: December 11, 2013Date of Patent: November 15, 2016Inventors: John E. Meredith, Thomas J. Urban
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Patent number: 9494319Abstract: A system for detecting a combustion-related condition in a pulverizer includes a pulverizer configured to receive coal chunks via an inlet, to grind the coal chunks into coal powder and to output the coal powder via an outlet. The system includes sensors configured to detect heat input characteristics supplied to the pulverizer and heat output characteristics emitted from the pulverizer. The system also includes a controller configured to determine, based on signals from the sensors, whether a combustion-related condition exists in the pulverizer based on a heat balance function including the heat input characteristics and the heat output characteristics.Type: GrantFiled: March 15, 2013Date of Patent: November 15, 2016Assignee: GENERAL ELECTRIC TECHNOLOGY GMBHInventors: James P. Sutton, David C. Saunders, Rebecca Lynn Tobiasz, Gerald Chase
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Patent number: 9494320Abstract: A flame powered intermittent pilot combustion controller may include a first power source and a second power source separate from the first power source, a thermal electric and/or photoelectric device, an igniter and a controller. The thermal electric and/or photoelectric device may charge the first power source when exposed to a flame. The controller and the igniter may receive power from the first power source when the first power source has sufficient available power, and may receive power from the second power source when the first power source does not have sufficient available power.Type: GrantFiled: January 11, 2013Date of Patent: November 15, 2016Assignee: Honeywell International Inc.Inventors: Brent Chian, Douglas Bird, Peter Anderson, Timothy J. Nordberg, Thomas Johnson, Rolf L. Strand
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Patent number: 9494321Abstract: A wake reducing structure includes a combustor liner having an inner surface and an outer surface, the inner surface defining a combustor chamber. Also included is an airflow path located along the outer surface of the combustor liner. Further included is a wake generating component disposed in the airflow path and proximate the combustor liner, wherein the wake generating component generates a wake region located downstream of the wake generating component. Yet further included is a wake generating component boss operatively coupled to the combustor liner and disposed within a combustor liner aperture. Also included is a cooling channel extending through the wake generating component boss, the cooling channel having an air inlet on an upstream region of the wake generating component boss and an air outlet on a downstream region of the wake generating component boss, the cooling channel configured to supply air to the wake region.Type: GrantFiled: December 10, 2013Date of Patent: November 15, 2016Assignee: General Electric CompanyInventors: Patrick Benedict Melton, Richard Martin DiCintio
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Patent number: 9494322Abstract: The invention in particular relates to an oven (1) for baking food products (3). In order to improve automated heating procedures, the oven (1) comprises a camera (7) and a distance sensor (8), for example, which are used in concert to enable precise extraction of product-features that are relevant and used with automated heating procedures.Type: GrantFiled: October 16, 2013Date of Patent: November 15, 2016Assignee: ELECTROLUX HOME PRODUCTS CORPORATION N.V.Inventors: Christoph Luckhardt, Florian Ruther
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Patent number: 9494323Abstract: An oven appliance includes a cabinet that defines a chamber. A pair of doors is rotatably mounted to provide selective access to the chamber of the cabinet. The pair of doors is connected with a linkage assembly such that the doors rotate open and closed simultaneously. The linkage assembly includes a spur gear that engages another gear of the linkage assembly. The spur gear can hinder unwanted rotation of the pair of doors or compress the pair of doors against a seal.Type: GrantFiled: March 29, 2016Date of Patent: November 15, 2016Assignee: Haier US Appliance Solutions, Inc.Inventors: John Adam Yantis, John Mark Chilton, Scott Thomas Kershner, Eric Sugalski, David Schoon, David Perry
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Patent number: 9494324Abstract: A system and method for controlling the exhaust flow rate in an exhaust ventilation system including an exhaust hood positioned above a cooking appliance. The method can include measuring a temperature of the exhaust air in the vicinity of the cooking appliance, and measuring a radiant temperature of a surface of the cooking appliance, and determining an appliance status based on the measured exhaust air temperature and radiant temperature, and controlling the exhaust flow rate in response to the determined appliance status.Type: GrantFiled: December 3, 2009Date of Patent: November 15, 2016Assignee: OY HALTON GROUP LTD.Inventors: Andrey V. Livchak, Chester Raczewski, Derek W. Shrock
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Patent number: 9494325Abstract: A fuel tank structure comprising a fuel tank; a canister that adsorbs evaporated fuel within the fuel tank, and that releases vapor after adsorption of evaporated fuel; a full tank regulating valve within the fuel tank that becomes a closed state due to a float floating in fuel when a fuel liquid surface reaches a full tank liquid level that is set in advance; a communication pipe that communicates the fuel tank and the canister via the full tank regulating valve, a cross-sectional area varying valve that, when tank internal pressure that is applied from inside of the fuel tank increases, reduces a cross-sectional area of a flow path of vapor that flows toward the float; and a suppressing member that is positioned between the cross-sectional area varying valve and the float, and that suppresses airflow from the cross-sectional area varying valve from directly abutting the float.Type: GrantFiled: February 12, 2014Date of Patent: November 15, 2016Assignees: TOYOTA JIDOSHA KABUSHIKI KAISHA, KYOSAN DENKI CO., LTD.Inventors: Shinji Shimokawa, Nobuharu Mutou, Yasuo Akimoto
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Patent number: 9494326Abstract: An apparatus for heating a liquid includes: a mixing chamber; dispensing means; an electronic control device linked to the dispensing means; one or more pumps; a heat exchanger; one or more monitoring stations being arranged to communicate with the electronic control device; a waste outlet; and a second heat exchanger, wherein the mixing chamber, heat exchanger and the one or more monitoring stations are connected so as to form a loop; and wherein the electronic control device is programmed to cause reaction mixture to be circulated around the loop at least twice, and optionally to cause the dispensing means to dispense further metered amounts of first and/or second chemical reactants into the mixing chamber; and/or to cause a proportion of reaction mixture to be ejected through the waste outlet, in order to control the temperature of the reaction mixture passing through the heat exchanger.Type: GrantFiled: February 9, 2015Date of Patent: November 15, 2016Inventor: Mark Collins
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Patent number: 9494327Abstract: A UV lamp service life indicator device includes an indicator member including a material that degrades at a rate sufficient to track a useful life of a UV lamp, where the indicator member indicates whether the UV lamp has come to an end of its service life. The indictor device can also include a reference component that indicates whether the UV lamp has come to an end of its service life.Type: GrantFiled: June 6, 2014Date of Patent: November 15, 2016Assignee: TRANE INTERNATIONAL INC.Inventor: Brian John Newton
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Patent number: 9494328Abstract: A filter unit which has a simple structure and can ensure high-level safety in response to risk during operation of an apparatus such as an isolator device is provided. One type of filter unit includes a rectangular cylindrical body having a first wall portion provided with an air inlet portion and a second wall portion formed so as to cross the first wall portion and provided with an air discharge port portion, a filter member provided in the cylindrical body for filtering introduced air, an annular seal member surrounding an outer periphery portion of the air inlet portion, and a detachable lid body closing the air inlet portion in an airtight manner. The filter unit is connected to a work chamber such that the air inlet portion is attached so as to oppose an air outlet of the work chamber and so that the seal member abuts an outer wall portion of the work chamber in an airtight manner.Type: GrantFiled: November 10, 2014Date of Patent: November 15, 2016Assignee: Airex Co., Ltd.Inventors: Koji Kawasaki, Minoru Miyamoto, Toshinaga Toda
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Patent number: 9494329Abstract: An air conditioning indoor unit includes a casing having an air outlet, a horizontal blade that changes an up and down direction flow of outlet air, a Coanda blade to change the outlet air to a Coanda airflow along an undersurface of the Coanda blade, and a control unit. The control unit adjusts a relative angle between the Coanda blade and the horizontal blade to selectively use either of a first airflow state and a second airflow state. In the first airflow state, the control unit adjusts the relative angle to a predetermined angle in a first angular range to produce the Coanda airflow on substantially an entire region of the undersurface of the Coanda blade. In the second airflow state, the control unit adjusts the relative angle to a predetermined angle in a second angular range larger than the first angular range to not produce the Coanda airflow.Type: GrantFiled: December 26, 2012Date of Patent: November 15, 2016Assignee: Daikin Industries, Ltd.Inventor: Masanao Yasutomi
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Patent number: 9494330Abstract: In one aspect, the invention is directed to a kit of parts for a solar powered vent fan system for use in transporting air through a vent aperture (eg. a roof vent aperture) of a building. The kit of parts includes a motor/fan assembly, a motor/fan assembly mounting plate, a solar panel and a solar panel mounting structure. The motor/fan assembly mounting plate is configured to receive the motor/fan assembly and to substantially cover the vent aperture. The motor/fan assembly mounting plate includes a motor/fan assembly aperture to permit air to be transferred through the motor/fan assembly as a result of operation of the motor/fan assembly. The solar panel is connectable electrically to the motor/fan assembly to power the motor/fan assembly. The solar panel mounting structure is for mounting the solar panel in a suitable position to receive solar energy.Type: GrantFiled: January 10, 2011Date of Patent: November 15, 2016Inventor: Thomas Bushey
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Patent number: 9494331Abstract: A ventilation system (1) for air ventilation is disclosed, comprising a continuous duct (5) having openings at both ends, an air flow generator (2) arranged inside the duct to be rotatable around an axis of rotation so that, positioned in different rotational positions, the air flow generator is capable of producing a substantially axial air flow in each of the two directions through the duct, respectively, one or more registers arranged to be moveable between different positions, in at least one of which positions the one or more registers (6) leave the duct (5) open for air passage, whereas in another of the positions the one or more registers (6) substantially block the air passage through the duct (5), means for rotating the air flow generator (2), and means for moving the one or more registers. Furthermore, methods for controlled active and passive ventilation, respectively, through the duct of such a ventilation system (1) are disclosed.Type: GrantFiled: May 11, 2012Date of Patent: November 15, 2016Assignee: InVentilate Holdings ApSInventor: John Borsting Jensen
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Patent number: 9494332Abstract: A thermostat includes a wiring terminal having a moveable component that is actuatable to enable insertion of an HVAC system conductive wire within the wiring terminal. Insertion of the HVAC system conductive wire within the wiring terminal electrically connects the wiring terminal and the HVAC system conductive wire. The actuation of the moveable component opens a loop of an electrical circuit that does not include the HVAC system conductive wire. The loop may enable power harvesting for the thermostat.Type: GrantFiled: February 24, 2011Date of Patent: November 15, 2016Assignee: Google Inc.Inventors: John Benjamin Filson, Daniel Adam Warren, Anthony Michael Fadell, Sheng-Nan Yu
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Patent number: 9494333Abstract: In exemplary embodiments, driving controls and diagnostic methods are disclosed for communicating motors. In an exemplary embodiment, a method generally includes generating a signal for sending to a communicating motor using transmitting hardware in a driving control, detecting the generated signal before it is transmitted to the communicating motor using a transmit sense circuit in the driving control, and analyzing the detected signal to verify whether the transmitting hardware in the driving control is operational.Type: GrantFiled: November 8, 2013Date of Patent: November 15, 2016Assignee: Emerson Electric Co.Inventor: John F. Broker
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Patent number: 9494334Abstract: A system and method for advanced digital economization for an HVAC system having an economizer. A digital processing unit is configured to open a damper of an economizer within a dead-band range that allows for preemptive cooling prior to a call for cooling. This economization strategy allows for free cooling (outside air) without having to pay energy costs for cooled (air-conditioned) air. The system and method can be used with or without demand control ventilation (DCV). The method also includes a “self-learning” strategy with outside air and return air sensor to regularly sense past economizer damper modifications and average out recent readings to help set the dead-band range. The method can include the ability to work in conjunction with a variable supply fan speed control, provide fault detection, self-correct, auto-configure, and report system status.Type: GrantFiled: March 15, 2013Date of Patent: November 15, 2016Assignee: Transformative Wave Technologies LLCInventors: Justin James Sipe, Daniel E. Miller, Gerald B. Scott, Kenneth Hellewell
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Patent number: 9494335Abstract: The air flow of an HVAC system for a multi-story building B is controlled by optimizing the pressure setpoint at the return air plenum PL-1 used for removing or recirculate air from the building, by measuring a pressure differential between the building B air and atmosphere A air at a sensor location P-2, computing a desired pressure differential between the building B air and atmosphere A air, based upon a computed stack effect pressure that is expected to develop at the sensor location on the building for the current inside and outside air temperature in the absence of mechanical action, and controlling the return air fan and damper D-1 to pressurize the air in at the sensor location to produce the desired pressure differential between the building B air and atmosphere A air at the sensor P-2 location.Type: GrantFiled: May 9, 2013Date of Patent: November 15, 2016Assignee: Pathian IncorporatedInventor: Daniel Buchanan
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Patent number: 9494336Abstract: In some example pliable air duct systems, inflatable ducts of various diameters and lengths are created by selectively assembling pre-existing stock pieces in different combinations. In some examples, the stock pieces include disconnectable longitudinal joints and disconnectable circumferential joints, wherein the longitudinal joints enable interconnecting multiple stock pieces to achieve a desired tube diameter, and the circumferential joints allow connecting multiple tube segments end-to-end to produce an air duct assembly of a desired length. To control the volume and/or the direction of air discharged from the duct, the duct assembly, in some examples, includes an adjustable register comprising a movable pliable sheet that overlies a discharge opening in a pliable sidewall of the duct. In some examples, the inflatable duct includes one or more cutout patterns on the duct's sidewall to provide guidance in creating a sidewall discharge opening of a proper size and location.Type: GrantFiled: May 3, 2010Date of Patent: November 15, 2016Assignee: Rite-Hite Holding CorporationInventors: Cary Pinkalla, Frank Heim, Irene E. Stephan, Kevin J. Gebke, Michael A. Jacobson, Nicholas L. Kaufmann, William A. Niehaus
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Patent number: 9494337Abstract: An apparatus for heating air comprising an elongate body adapted to receive, or integrally formed with, one or more electrical heating elements in thermal contact therewith, said body comprising a plurality of heat exchange fins defining a plurality of axially extending flow passages therebetween for heating air flowing therethrough.Type: GrantFiled: September 7, 2010Date of Patent: November 15, 2016Assignee: Munster Simms Engineering LimitedInventor: Christopher William Ragg
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Patent number: 9494338Abstract: A solar light collecting mirror includes a reflective section which is elastically deformable, and a frame which is elastically deformable and configured to support the reflective section. A central portion of the reflective section is positionally fixed in X and Y directions of the reflective section. A relative position in a Z direction between the central portion of the reflective section and a peripheral portion of the reflective section is changeable. The peripheral portion of the reflective section is not positionally fixed in the X and Y directions. The frame includes warp members which radially extend from a position corresponding to the central portion of the reflective section. And the reflective section is configured to deform elastically together with the frame so as to change the relative position in the Z direction between the central portion and the peripheral portion, whereby a concave mirror structure is obtained.Type: GrantFiled: June 12, 2012Date of Patent: November 15, 2016Assignee: KONICA MINOLTA, INC.Inventors: Kazuo Ishida, Yutaka Takahashi
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Patent number: 9494339Abstract: A solar collector comprises a solar absorbing tube comprising enclosure enclosing an absorbing section, comprising a radiation absorbing plate and a tube, containing a working fluid in thermal contact with the plate. The tube extends out of one end of the tube and connects with a condenser wherein the thermal transfer fluid when in a vapor phase communicates with a fluid to be heated within an end fitting. The condenser of a tube is inserted into a thermal pocket sealingly engaged with a gasket within the pipe receiving portion of the fitting, whereby heat transfer can take place between the condensers of the pipes and a fluid flowing via path in the fitting. The pocket is sealed against ingress of heat exchange fluid flowing through the fitting.Type: GrantFiled: September 9, 2011Date of Patent: November 15, 2016Assignee: Kingspan Holdings (IRL) LimitedInventors: John Reid, Patrick Robert Davis, Paul Thomas McEntee, William Hadden
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Patent number: 9494340Abstract: A solar positioning system configured to position a body, such as, but not limited to, a solar module, perpendicular to incoming solar energy to maintain an optimal angle of incidence with efficacy is disclosed. The solar positioning system may include a support subsystem having a first mechanism for controlling rotational adjustments about a first axis and a second mechanism for controlling rotational adjustments about a second axis, thereby controlling pan and tilt adjustment. Positioning of the support subsystem may be controlled by a plurality of pyroelectric infrared sensors similarly oriented. A differential amplifier and a comparator may be coupled between the sensor subsystem and an integrated circuit to ignore brief flashes of light. The solar positioning system may also be used with a solar positioning control system to control the position of two or more solar modules, such as hundreds of solar modules in a solar farm.Type: GrantFiled: August 16, 2013Date of Patent: November 15, 2016Inventor: Andrew O'Neill
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Patent number: 9494341Abstract: The present invention relates to a highly-available and fault-tolerant solar tracking system and the process required to manage such a system. A fleet of multiple, redundant mobile robots managed by a task coordinator is deployed to track solar panels in a solar farm in alignment with the sun. Each robot has a control unit for engaging with a coupler connected to one or multiple solar panels and adjusting their orientation, as well as communicating with the task coordinator to receive tasks. The task coordinator senses various events such as robot failure/deterioration, as well as various environmental conditions, and sends tasks reconciled with event types. The system is highly-available and fault-tolerant as it remains operational as long as there is one operational robot. The task coordinator assigns tasks to the mobile robots so as to optimize battery life or other factors, such as, e.g., overall maintenance costs across the fleet.Type: GrantFiled: September 10, 2013Date of Patent: November 15, 2016Assignee: SolarCity CorporationInventors: Salomon J. Trujillo, Vayardo L. Ruiz, Noe Esparza, Jessica A. Riley, Kevin C. Chu, Wasiq Bokhari
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Patent number: 9494342Abstract: A mounting unit for mounting a solar panel on a roof includes a base having a first flange and a second flange that extend laterally from the base and a mounting surface positioned above the base via walls that connect the mounting surface and the base. The mounting surface is couplable with the solar panel to elevate and orient the solar panel above a surface of the roof. The mounting unit also includes a flexible membrane material that is coupled with the first flange of the base and that extends laterally therefrom. The mounting unit further includes an adhesive or tape that is applied to an underside of the second flange so that the second flange is free of the flexible membrane material. The flexible membrane material is couplable with the roof and the adhesive or tape is adherable to the roof to secure the mounting unit to the roof.Type: GrantFiled: September 9, 2014Date of Patent: November 15, 2016Assignee: Johns ManvilleInventors: Francis John Babineau, Jr., Brian G Shamas, Eric Smith
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Patent number: 9494343Abstract: A partially non-rigid solar capture mounting system which reduces the risk of damage due to wind is disclosed. The solar capture mounting system includes at least one pole, a horizontal beam mounted to the pole, and at least one backing plate hanging from the horizontal beam via a pivotal connection. Examples of pivotal connection are bushings with ball bearings, hinges, steel rings and spring clips. Each of the backing plates supports at least one solar cell. Wind pressure against a backing plate pivots the backing plate about the horizontal beam such that the system experiences reduced stress and reduced risk of damage due to wind and wind carried objects.Type: GrantFiled: July 7, 2010Date of Patent: November 15, 2016Inventor: Rodney Harold Thomas
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Patent number: 9494344Abstract: A method for converting a cryostat configuration (1) having a first container (2) with a liquid helium bath (3) and a second container (6) which is filled with liquid nitrogen (7) is characterized in that a cooling medium (12) which is in a gaseous state at a temperature of 60K and a pressure of 1 bar, is introduced into the second container and is cooled by a refrigerator (16) by means of a cooling circuit (11), the coolant lines of which are guided into the second container, to an operating temperature of ?60K. With this retrofit for existing cryostat configurations that utilize both liquid helium and also liquid nitrogen for cooling a superconducting coil, use of liquid nitrogen can be completely avoided and the evaporation rate of the liquid helium can also be considerably reduced without having to re-liquefy the cryogens used.Type: GrantFiled: July 1, 2014Date of Patent: November 15, 2016Assignee: Bruker BioSpin AGInventors: Andreas Kraus, Robert Schauwecker, Joerg Hinderer
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Patent number: 9494345Abstract: The invention relates to a refrigeration circuit having a mono- or multi-component refrigerant circulating therein, said refrigeration circuit comprising, in the direction of flow, a condenser, a collecting container, a relief device connected upstream of an evaporator, an evaporator and a compressor unit with single-stage compression. According to the invention, there is an intermediate relief device arranged between the condenser and the collecting container. Furthermore, there is disclosed a method of operating a refrigeration device in which pressure relief of the refrigerant to an (intermediate) pressure of 5 to 40 bar is effected in the intermediate relief device arranged between the condenser and the collecting container.Type: GrantFiled: September 29, 2014Date of Patent: November 15, 2016Assignee: Carrier CorporationInventors: Bernd Heinbokel, Andreas Gernemann, Uwe Schierhorn
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Patent number: 9494346Abstract: A disclosed device cryogenic refrigerator includes a first stage displacer; a first stage cylinder configured to form a first expansion space between the first stage cylinder and the first stage displacer; a second stage displacer connected to the first stage displacer; and a second stage cylinder configured to form a second expansion space between the second stage cylinder and the second stage displacer, wherein the second stage displacer includes a helical groove formed on an outer peripheral surface of the second stage displacer so as to helically extend from the second expansion space, a flow resistor communicating with a side of the first stage displacer in the helical groove, and a flow path connecting the flow resistor to a side of the first expansion space, wherein the flow resistor is always positioned on a side of the second expansion space relative to the first expansion space.Type: GrantFiled: September 14, 2012Date of Patent: November 15, 2016Assignee: SUMITOMO HEAVY INDUSTRIES, LTD.Inventors: Mingyao Xu, Takaaki Morie
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Patent number: 9494347Abstract: In a heating mode, a refrigerant circuit is switched in which a refrigerant is decompressed by an ejector to flow into a gas-liquid separator, and a separated gas phase refrigerant is introduced into an intermediate-pressure suction port of a compressor and at the same time a separated liquid phase refrigerant flows to at least a second variable throttle valve, an interior evaporator, and a suction port of the compressor, in this order. In a cooling mode, a refrigerant circuit is switched in which the refrigerant flowing out of the interior condenser is decompressed by a first variable throttle valve through an exterior heat exchanger to flow into the gas-liquid separator, and a separated gas phase refrigerant is introduced into the intermediate-pressure suction port of the compressor, and at the same time a separated liquid phase refrigerant flows to the second variable throttle valve, the interior evaporator, and the suction port of the compressor, in this order.Type: GrantFiled: June 20, 2013Date of Patent: November 15, 2016Assignee: DENSO CORPORATIONInventors: Kenta Kayano, Haruyuki Nishijima, Etsuhisa Yamada, Yoshiaki Takano
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Patent number: 9494348Abstract: An air-conditioning apparatus controls an opening degree of at least one of a second expansion device and a third expansion device to adjust the amount of refrigerant to flow through the injection pipe.Type: GrantFiled: May 23, 2011Date of Patent: November 15, 2016Assignee: MITSUBISHI ELECTRIC CORPORATIONInventors: Katsuhiro Ishimura, Koji Yamashita, Hiroyuki Morimoto, Shinichi Wakamoto, Naofumi Takenaka
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Patent number: 9494349Abstract: A fluid heater employs a vapor compression cycle system. The vapor compression cycle system includes an evaporator, at least one condenser and a working fluid. The fluid heater includes a fluid conduit which forms a tube-in-tube heat exchanger with the condenser to effect heating of the fluid. A sensor is positioned at the condensing zone of the working fluid, to determine the temperature of the working fluid at the condensing phase of the vapor compression cycle. The output of the sensor is used to control the flow rate of fluid through the fluid conduit in order to achieve a desired target temperature of the fluid leaving the conduit.Type: GrantFiled: September 10, 2010Date of Patent: November 15, 2016Assignee: MATRIX ENGINEERING LIMITEDInventors: David Charles Senn, Daniel Rupert Gadd
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Patent number: 9494350Abstract: A plate-type heat exchanger having a first heat exchanger portion configured to receive a refrigerant flow and a hot side coolant flow having a lower temperature than the refrigerant flow, a second heat exchanger portion configured to receive the refrigerant flow exiting from the first heat exchanger portion and a cold side coolant flow having a higher temperature than the refrigerant flow exiting from the first heat exchanger portion, and an internal heat exchanger portion sandwiched between the first heat exchanger portion and the second heat exchanger portion. The refrigerant flow through the plate type heat exchanger is in non-contact thermal communication with the hot side coolant flow and the cold side coolant flow. The cold side coolant flow transfers heat energy to the refrigerant, which in turn transfer that heat energy to the hot side coolant flow.Type: GrantFiled: June 5, 2014Date of Patent: November 15, 2016Assignee: MAHLE International GmbHInventors: Prasad S. Kadle, Gary S. Vreeland, Frederick V. Oddi
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Patent number: 9494351Abstract: A method and apparatus for improving refrigeration and air conditioning efficiency for use with a heat exchange system having a compressor, condenser, evaporator, expansion device, and circulating refrigerant. The apparatus includes is a liquid refrigerant containing vessel having a refrigerant entrance and a refrigerant exit with the vessel positioned in the heat exchange system between the condenser and the evaporator, and means for creating a turbulent flow of liquefied refrigerant. The apparatus further preferably includes a refrigerant bypass path to sub-cool a portion of the refrigerant within the vessel; a disk positioned at the liquid refrigerant entrance to develop a low pressure area on the back side and create a turbulent flow of refrigerant entering the vessel; and a refrigerant valve incorporated into the refrigerant path downstream of the expansion valve and before the coil which develops a vortex that continues through the refrigerant coil.Type: GrantFiled: April 23, 2010Date of Patent: November 15, 2016Inventors: Gary E. Phillippe, Cass Khoo
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Patent number: 9494352Abstract: A suction modulation valve is throttled when conditions in a refrigerant system indicate that an undesirable amount of liquid refrigerant might otherwise be delivered to the compressor. As an example, the throttling would occur at start-up, among other conditions. Throttling the suction modulation valve reduces the amount of refrigerant reaching the compressor and thus ensures that any liquid refrigerant would be likely “boiled off” before raising any problems in the compressor. Other control steps can also be performed to alleviate flooded compressor operation with liquid refrigerant. Such steps, for example, can include actuating heaters, discharge valve throttling, by-passing refrigerant from an intermediate compression point back to suction, controlling the speed of the condenser fan can be performed independently or in combination including the suction modulation valve throttling.Type: GrantFiled: July 31, 2006Date of Patent: November 15, 2016Assignee: Carrier CorporationInventors: Alexander Lifson, Jason D. Scarcella
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Patent number: 9494353Abstract: A temperature control equipment is capable of controlling a tested object to a predetermined temperature. The temperature control equipment includes a thermal conducting plate, a temperature regulating module, a carrier plate, and a thermoelectric cooling module. The temperature regulating module is thermally connected to the thermal conducting plate for regulating the thermal conducting plate to a reference temperature. The carrier plate is used to accommodate the tested object. The thermoelectric cooling module is thermally connected between the thermal conducting plate and the carrier plate for controlling the tested object to the predetermined temperature via the carrier plate based on the reference temperature.Type: GrantFiled: June 12, 2014Date of Patent: November 15, 2016Assignee: CHROMA ATE INC.Inventors: Ben-Mou Yu, Ming-Chieh Lin, Ching-Wen Chang, Xin-Yi Wu
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Patent number: 9494354Abstract: A system and method for calculating parameters for a refrigeration system having a variable speed compressor is provided. A compressor is connected to a condenser and an evaporator. An evaporator sensor outputs an evaporator signal corresponding to at least one of an evaporator pressure and an evaporator temperature. An inverter drive modulates electric power delivered to the compressor to modulate a speed of the compressor. A control module is connected to the inverter drive that receives the evaporator signal. The control module monitors electrical power data and compressor speed data from the inverter drive and calculates at least one of a condenser temperature and a condenser pressure based on the evaporator signal, the electrical power data, and the compressor speed data.Type: GrantFiled: March 18, 2013Date of Patent: November 15, 2016Assignee: Emerson Climate Technologies, Inc.Inventors: Daniel L. McSweeney, Stephen M. Seibel, Hung M. Pham
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Patent number: 9494355Abstract: A refrigerant cycle device includes a first refrigerant passage for guiding refrigerant from a refrigerant radiator to an inlet side of an outdoor heat exchanger, a first throttle part capable of varying an opening area of the first refrigerant passage, a second refrigerant passage for guiding the refrigerant from the outdoor heat exchanger to a compressor-suction side, a first opening/closing part for opening/closing the second refrigerant passage, a third refrigerant passage for guiding the refrigerant from the outdoor heat exchanger to the compressor-suction side via an evaporator, a second throttle part capable of varying an opening area of the third refrigerant passage, a bypass passage for guiding the refrigerant flowing between the refrigerant radiator and the first throttle part to a position between the outdoor heat exchanger and the second throttle part in the third refrigerant passage, and a second opening/closing part for opening/closing the bypass passage.Type: GrantFiled: February 16, 2015Date of Patent: November 15, 2016Assignee: DENSO CORPORATIONInventors: Satoshi Itoh, Atsushi Inaba, Mikiharu Kuwahara
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Patent number: 9494356Abstract: A climate control system is provided and may include a compressor, a first heat exchanger in fluid communication with the compressor, a second heat exchanger in fluid communication with the compressor and the first heat exchanger, and a third heat exchanger disposed between the first heat exchanger and the second heat exchanger and including an inlet and an outlet. A conduit may be fluidly coupled to the third heat exchanger and the compressor and may selectively supply fluid to the compressor. A valve may control a volume of fluid supplied to the compressor via the conduit. A controller may control the valve based on a temperature difference between the outlet of the third heat exchanger and the inlet of the third heat exchanger.Type: GrantFiled: September 13, 2013Date of Patent: November 15, 2016Assignee: Emerson Climate Technologies, Inc.Inventors: Chao Jiang, Ying Wang
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Patent number: 9494357Abstract: Disclosed are an ice maker, a refrigerator having the ice maker, and a method for supplying ice of the refrigerator. An ice making container long in a vertical direction is installed on a side wall surface of a refrigerator door, makes ice, and pushes up the ice by screws to release the ice, whereby the size of the ice maker can be reduced, the area occupied by the ice maker can be reduced, and a refrigerator having the ice maker can become slimmer. Also, because an installation height of the ice maker is lowered to shorten a cold air supply path and prevent a loss in the process of supplying cold air to the ice making chamber. Also, because a cutting operation is performed simultaneously when the ice is lifted, a fabrication cost can be reduced and a defective state due to malfunction can be prevented.Type: GrantFiled: February 23, 2011Date of Patent: November 15, 2016Assignee: LG Electronics Inc.Inventors: Bongjin Kim, Seongjae Kim, Moongyo Jung
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Patent number: 9494358Abstract: An air conditioner is provided, which can reduce a rotation direction velocity component of air being discharged from a fan and enhance fan efficiency and installed space utilization.Type: GrantFiled: September 6, 2012Date of Patent: November 15, 2016Assignee: LG ELECTRONICS INC.Inventors: Seokho Choi, Yongcheol Sa
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Patent number: 9494359Abstract: A cryogenic system includes a superconducting magnet (20) in a reservoir of liquid helium (LH). Helium vapor (VH) rises and contacts a recondenser surface (50, 50?, 50?) on which the helium vapor (VH) condenses into liquid helium and flows by gravity off a lower edge of the recondenser surface. A plurality of fins (52) extend from the recondenser surface or a plurality of grooves (52?, 52?) are cut into the recondenser surface to disrupt the film thickness and to provide a path by which droplets of the liquid helium leave the recondenser surface without travelling a full vertical length of the recondenser (30).Type: GrantFiled: August 27, 2009Date of Patent: November 15, 2016Assignee: Koninklijke Philips N.V.Inventors: Glen G. Pfleiderer, Robert A. Ackermann
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Patent number: 9494360Abstract: An air conditioner for a vehicle is provided with: a compressor that compresses a heat exchange medium; an external heat exchanger that receives the heat exchange medium and that exchanges heat with the outside of a vehicle compartment; and an evaporator that receives the heat exchange medium and exchanges heat with the inside of a vehicle compartment, and the air conditioner for a vehicle is able to perform: a defrosting cooling operation in which the heat exchange medium that has been compressed by the compressor is made to flow into the evaporator and absorb heat, and to then flow into the external heat exchanger and release heat; and a hot gas operation in which the heat exchange medium that has been compressed by the compressor is made to flow into the external heat exchanger and release heat without being made to absorb heat in the evaporator, and, by switching between performing the defrosting cooling operation and performing the hot gas operation, the air conditioner for a vehicle performs a defrostinType: GrantFiled: May 14, 2013Date of Patent: November 15, 2016Assignee: Honda Motor Co., Ltd.Inventors: Isao Tsunoda, Kazuma Ichikawa
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Patent number: 9494361Abstract: An air-conditioning apparatus includes: an outdoor unit including a compressor, a first refrigerant flow path switching device, and a heat-source-side heat exchanger; a heat medium relay unit including an intermediate heat exchanger, an expansion device, a second refrigerant flow path switching device, and a pump; and at least one indoor unit including a use-side heat exchanger. A refrigerant pipe connects the compressor, the first refrigerant flow path switching device, the expansion device, the second refrigerant flow path switching device, and the intermediate heat exchanger, thereby making up a refrigeration cycle. A heat medium pipe connects the intermediate heat exchanger and the use-side heat exchanger, thereby making up a heat medium circulation circuit in which a heat medium different from the refrigerant circulates. The first refrigerant flow path switching device is switched to execute a defrost operation mode.Type: GrantFiled: March 22, 2012Date of Patent: November 15, 2016Assignee: Mitsubishi Electric CorporationInventors: Takeshi Hatomura, Koji Yamashita, Hiroyuki Morimoto
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Patent number: 9494362Abstract: Disclosed herein is a refrigerator. In the refrigerator, a water purifying unit including a filter unit to purify water supplied from a water supply source is arranged adjacent to a drawer type storage container in an otherwise useless space of a storage compartment.Type: GrantFiled: March 9, 2016Date of Patent: November 15, 2016Assignee: SAMSUNG ELECTRONICS CO., LTD.Inventors: Jae Hoon Lim, Jae Koog An, Jong Eun Chae, Sang Min Park
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Patent number: 9494363Abstract: An air-conditioning apparatus uses a zeotropic refrigerant mixture, in which its saturated liquid refrigerant temperature is lower than the saturated gas refrigerant temperature under the same pressure condition, as the heat source side refrigerant. When one or some of a plurality of heat exchangers related to heat medium functions as an evaporator, the air-conditioning apparatus executes an anti-freezing control that prevents the heat medium from freezing by estimating occurrence of freezing of the heat medium on the basis of a value obtained by subtracting a freezing temperature correction value that is set as a positive value larger than zero from an evaporating temperature of the refrigerant in the heat exchanger related to heat medium.Type: GrantFiled: October 12, 2010Date of Patent: November 15, 2016Assignee: MITSUBISHI ELELCTRIC CORPORATIONInventor: Koji Yamashita
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Patent number: 9494364Abstract: A dryer hopper assembly that promotes even drying of particulate matter across the horizontal cross-section of the hopper. In an aspect, the hopper promotes airflow up and alongside the interior wall of the hopper in counter-current flow to particulate material passing through the hopper. In one or more aspects, heating and thus drying of the material is promoted from the interior periphery of the horizontal cross-section of the hopper assembly towards the central axis of the hopper.Type: GrantFiled: February 28, 2014Date of Patent: November 15, 2016Assignee: Process Control CorporationInventors: Joseph D. Robertson, Dana G. Darley