Patents by Inventor Jacob Skogstrom

Jacob Skogstrom has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20230118895
    Abstract: A heat extracting system (100) arranged to be connected to a thermal energy circuit (300) comprising a hot conduit (302) configured to allow thermal fluid of a first temperature to flow therethrough, and a cold conduit (304) configured to allow thermal fluid of a second temperature to flow therethrough, the second temperature is lower than the first temperature, and a heat depositing system (200) arranged to be connected to a thermal energy circuit (300) comprising a hot conduit (302) configured to allow thermal fluid of a first temperature to flow therethrough, and a cold conduit (304) configured to allow thermal fluid of a second temperature to flow therethrough, the second temperature is lower than the first temperature. Also a heat depositing system (200) is disclosed.
    Type: Application
    Filed: March 10, 2021
    Publication date: April 20, 2023
    Inventors: Per Rosén, Jacob Skogström, Bengt Lindoff, Helen Carlstrom, Fredrik Rosenqvist
  • Publication number: 20230077879
    Abstract: A heat pump assembly (100) arranged to be connected to a thermal energy circuit (300) comprising a hot conduit (302) configured to allow thermal fluid of a first temperature to flow therethrough, and a cold conduit (304) configured to allow thermal fluid of a second temperature to flow therethrough, the second temperature is lower than the first temperature, and a cooling machine assembly (200) arranged to be connected to a thermal energy circuit (300) comprising a hot conduit (302) configured to allow thermal fluid of a first temperature to flow therethrough, and a cold conduit (304) configured to allow thermal fluid of a second temperature to flow therethrough.
    Type: Application
    Filed: February 9, 2021
    Publication date: March 16, 2023
    Inventors: Per Rosén, Jacob Skogström, Bengt Lindoff, Helen Carlström, Fredrik Rosenqvist
  • Publication number: 20230045781
    Abstract: The present invention relates to a distribution pump arrangement for a bi-directional hydraulic distribution grid (10).
    Type: Application
    Filed: December 9, 2019
    Publication date: February 9, 2023
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20220381449
    Abstract: Disclosed is a method for controlling a control valve (110), wherein the control valve (110) is configured to control a flow of heat transfer fluid to a thermal energy extraction unit (108). The method comprising: reviewing (S402) a demand signal for the control valve (110); checking (S404) if the demand signal is indicative of setting the control valve (110) in a hysteresis interval for the control valve (110); and upon the demand signal is indicative of setting the control valve (110) in the hysteresis interval, alternatingly (S406) setting the control valve (110) in an open state above the hysteresis interval and setting the control valve (110) in a closed state.
    Type: Application
    Filed: October 27, 2020
    Publication date: December 1, 2022
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff, Helen Carlstrom
  • Publication number: 20220356672
    Abstract: A filled trench is disclosed. The filled trench comprises: a pair of conduits (3a, 3b) for delivering fluid with a different temperature in each of the conduits (3a, 3b), the pair of conduits (3a, 3b) being surrounded by filling material; a first section (5a) filled with a filling material of a first type (4a), wherein the first filled section (5a) of the filled trench occupies a space in between the pair of conduits (3a, 3b); and a second section (5b) filled with a filling material of a second type (4b). The filling material of the first type (4a) has a first thermal conduction coefficient and the filling material of a second type (4b) has a higher second thermal conduction coefficient. Further, a method for filling such a filled trench is disclosed.
    Type: Application
    Filed: October 14, 2019
    Publication date: November 10, 2022
    Inventors: Per Rosén, Jacob Skogström, Bengt Lindoff, Fredrik Rosenqvist
  • Publication number: 20220349589
    Abstract: A method for identifying a deviation in a thermal energy circuit is presented.
    Type: Application
    Filed: February 20, 2020
    Publication date: November 3, 2022
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20220243928
    Abstract: A method for controlling a district thermal energy distribution system is presented. The method comprises: determining whether a local pressure difference between a feed line (111) and a return line (112) of a distribution grid (110) is below a predetermined threshold; upon the local pressure difference is determined to be below the predetermined threshold, generating a control signal comprising information instructing a local distribution system (150) to reduce outtake of heat or cold from the distribution grid (110); sending the control signal to a local control unit (140) of the local distribution system (150); and reducing, in response to the control signal, the outtake of heat or cold of the local distribution system (150) from the distribution grid (110). The distribution grid (110) may be a district heating grid or a district cooling grid. Also, a control server and a district thermal energy distribution system is presented.
    Type: Application
    Filed: June 11, 2020
    Publication date: August 4, 2022
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist
  • Publication number: 20220214070
    Abstract: A method for controlling indoor climate in a portion (102) of a building (100) is presented. The method comprises: identifying (S402), based on a wireless communication based positioning function, electronic devices (204a, 204b, 204c) present in the portion (102) of the building (100); for each identified electronic device, determining whether the identified electronic device is associated with a user; determining (S406) an estimated total amount of heat dissipation present in the portion (102) of the building (100) based on an amount of heat dissipation associated with the respective user to which the respective identified electronic device is associated; and controlling (S408) indoor climate in the portion (102) of the building (100) based on the estimated total amount of heat dissipation present in the portion (102) of the building (100). Also, a server (106) and a system for performing the controlling are presented.
    Type: Application
    Filed: April 17, 2020
    Publication date: July 7, 2022
    Inventors: Bengt Lindoff, Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Helen Carlström
  • Publication number: 20220146126
    Abstract: A heat pump assembly (100) is presented. The heat pump assembly (100) comprises a heat pump (110) having a primary side inlet (122) and a primary side outlet (124); a primary side inlet valve assembly (126) comprising: a primary side inlet connection (126a) connected to the primary side inlet (122), a primary side inlet valve first conduit connection (126b) configured to be connected to a first conduit (12) of a thermal energy grid (10), and a primary side inlet valve second conduit connection (126c) configured to be connected to a second conduit (14) of the thermal energy grid (10); a first conduit temperature determining device (105a) configured to measure a local temperature, t1, of heat transfer liquid of the first conduit (12); a second conduit temperature determining device (105b) configured to measure a local temperature, t2, of heat transfer liquid of the second conduit (14); and a controller (108).
    Type: Application
    Filed: February 25, 2020
    Publication date: May 12, 2022
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20220026080
    Abstract: The present invention relates to a distribution pump arrangement for a bi-directional hydraulic distribution grid (10).
    Type: Application
    Filed: December 9, 2019
    Publication date: January 27, 2022
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20220018488
    Abstract: A filled trench is disclosed. The filled trench comprises: a pair of conduits (3a, 3b) for delivering fluid with a different temperature in each of the conduits, the pair of conduits being surrounded by filling material; a first section (5a) filled with a filling material of a first type (4a), wherein the first filled section (5a) of the filled trench occupies a space surrounding a first conduit (3a) of the pair of conduits; and a second section (5b) filled with a filling material of a second type (4b), wherein the second filled section (5b) of the filled trench occupies a space surrounding a second conduit (3b) of the pair of conduits. The filling material of the first type (4a) has a first thermal conduction coefficient and the filling material of the second type (4b) has a second thermal conduction coefficient, the second thermal conduction coefficient being different from the first thermal conduction coefficient.
    Type: Application
    Filed: December 3, 2019
    Publication date: January 20, 2022
    Inventors: Per Rosén, Jacob Skogström, Bengt Lindoff, Fredrik Rosenqvist
  • Publication number: 20220003427
    Abstract: A thermal energy extraction assembly is disclosed, the thermal energy extraction assembly is configured to extract heat and/or cold from a thermal energy distribution grid. The assembly may include a connection circuit connecting the assembly to the grid; a first heat exchanger configured to exchange heat from a heating circuit to the grid; a second heat exchanger configured to extract heat from the grid to a cooling circuit; and a plurality of heat pumps each having a condenser side connected to the heating circuit and an evaporator side connected to the cooling circuit, the heat pumps being configured to pump heat from the cooling circuit to the heating circuit.
    Type: Application
    Filed: June 28, 2021
    Publication date: January 6, 2022
    Inventors: Per Rosén, Jacob Skogström, Helen Carlström, Bengt Lindoff
  • Publication number: 20220003429
    Abstract: A central controller for controlling power consumption in a thermal energy system is disclosed, the energy system may include a plurality of heat pump assemblies and a plurality of cooling machine assemblies, each heat pump assembly being connected to a thermal energy circuit comprising a hot conduit and a cold conduit via a thermal heating circuit inlet connected to the hot conduit and via a thermal heating circuit outlet connected to the cold conduit, each cooling machine assembly being connected to the thermal energy circuit via a thermal cooling circuit inlet connected to the cold conduit and via a thermal cooling circuit outlet connected to the hot conduit.
    Type: Application
    Filed: June 28, 2021
    Publication date: January 6, 2022
    Inventors: Per Rosén, Jacob Skogström, Helen Carlström, Bengt Lindoff
  • Publication number: 20210397147
    Abstract: The disclosure relates to a method for controlling a heat distribution system.
    Type: Application
    Filed: September 13, 2019
    Publication date: December 23, 2021
    Inventors: Per Rosén, Jacob Skogstrom, Fredrik Rosenqvist
  • Publication number: 20210381715
    Abstract: The present invention relates to a method for controlling setting of reversible heat pump assemblies (100) of a district thermal energy distribution system (1) in either a heating mode or a cooling mode.
    Type: Application
    Filed: December 3, 2019
    Publication date: December 9, 2021
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20210364168
    Abstract: A reversible heat pump assembly (100) is disclosed. The heat pump assembly (100) comprises a heat pump (110) having a first side (120) and a second side (130), the heat pump (110) being configured to transfer heat from the first side (120) to the second side (130) or vice versa; a first side inlet valve assembly (126) having a heat pump connection (126a) connected to the first side (120), and hot and cold conduit connections (126b; 126c) arranged to be connected to a thermal energy grid (10) comprising hot and cold conduits (12; 14); a second side outlet valve assembly (136) having a heat pump connection (136a) connected to the second side (130), and heating and cooling circuit connections (136b; 136c) arranged to be connected to heating and cooling circuits (130; 140), respectively. The reversible heat pump assembly (100) is configured to be selectively set in either a heating mode or a cooling mode.
    Type: Application
    Filed: May 14, 2019
    Publication date: November 25, 2021
    Inventors: Bengt Lindoff, Jacob Skogstrom, Per Rosen
  • Publication number: 20210341167
    Abstract: The disclosure relates to a method for controlling a thermal energy distribution system, the method comprising:—determining forecast data pertaining to expected overall outtake of heat and/or cooling over time from a distribution grid by local distribution systems connected to the distribution grid, and to expected production capacity of heat and/or cooling in one or more production plants,—determining, at a control server, a time resolved control signal, the control signal being based on forecast data and being associated with at least one local control unit,—sending the control signal from the control server to the associated local control unit,—receiving the control signal at the associated local control unit,—regulating over time, in response to the control signal, the outtake of heat and/or cooling of the local distribution system from the distribution grid.
    Type: Application
    Filed: October 2, 2019
    Publication date: November 4, 2021
    Inventors: Per Rosen, Jacob Skogstrom, Fredrik Rosen
  • Publication number: 20210270491
    Abstract: A controller configured to selectively set a reversible heat pump assembly (100) in either a heating mode or in a cooling mode is presented. The controller comprising a control circuit (44) configured to: for a time period, determine, using a demand determining function (50), a heating demand for heat from one or more local heating circuits (140) connected to the reversible heat pump assembly (100) and a cooling demand for cold from one or more local cooling circuits (140) connected to the reversible heat pump assembly (100); generate, using a control function (52), a control signal indicative of if the reversible heat pump assembly (100) is to be set in either the heating mode or in the cooling mode, wherein the control function is configured to use the heating demand and the cooling demand as input data; and send, using a transmission function (54), the control signal to a heat pump (110) of the reversible heat pump assembly (100).
    Type: Application
    Filed: June 19, 2019
    Publication date: September 2, 2021
    Inventors: Per Rosén, Jacob Skogström, Fredrik Rosenqvist, Bengt Lindoff
  • Publication number: 20210245617
    Abstract: A method for handling surplus or deficit of energy in local energy systems (30) is presented. The method comprising; determining an accumulator status based on data pertaining to an accumulator (20) of a moveable device (10); determining energy status of each of a plurality of local energy systems (30) based on data pertaining to the respective local energy system 30; scoring, based on the determined accumulator status and the determined energy statuses, each of the local energy systems (30); determining, based on the respective scores of each of the plurality of local energy systems (30), a local energy system (30), among the plurality of local energy systems (30), to which the moveable device (10) is to be directed. Also a server (40) configured to handling surplus or deficit of energy in local energy systems is presented.
    Type: Application
    Filed: April 26, 2019
    Publication date: August 12, 2021
    Inventors: Bengt Lindoff, Jacob Skogstrom, Per Rosen
  • Publication number: 20210114479
    Abstract: A method for handling surplus or deficit of energy in a local energy system (30) is presented. The method comprising: determining (S1) energy status of the local energy system (30) based on data pertaining to the local energy system (30); determining (S2), for each of a plurality of moveable devices (10) comprising an accumulator (20), an accumulator status based on accumulator data pertaining to the respective moveable device (10); scoring (S3), based on the determined respective accumulator statuses and the determined energy status, each of the moveable devices (10); and selecting (S4), based on the respective scores of each of the plurality of moveable devices (10), a moveable device (10) among the plurality of moveable devices (10) to which at least one of control information or navigational information associated to the local energy system (30) is to be sent; and sending the control information and/or the navigational information to the selected moveable device (10).
    Type: Application
    Filed: April 26, 2019
    Publication date: April 22, 2021
    Inventors: Bengt Lindoff, Jacob Skogstrom, Per Rosen