Patents by Inventor Tobias H. Sienel

Tobias H. Sienel 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).

  • Patent number: 10753656
    Abstract: A heat exchanger is provided including a first manifold, a second manifold separated from the first manifold, and a plurality of heat exchanger tubes arranged in spaced parallel relationship fluidly coupling the first and second manifolds. A first end of each heat exchange tube extends partially into an inner volume of the first manifold and has an inlet formed therein. A distributor is positioned within the inner volume of the first manifold. At least a portion of the distributor is arranged within the inlet formed in the first end of one or more of the plurality of heat exchange tubes.
    Type: Grant
    Filed: April 30, 2019
    Date of Patent: August 25, 2020
    Assignee: CARRIER CORPORATION
    Inventors: Michael F. Taras, Tobias H. Sienel, Kazuo Saito, Arindom Joardar, Bruce J. Poplawski
  • Patent number: 10508862
    Abstract: An air-cooled chiller system includes a heat exchanger including a first tube bank including at least a first and a second flattened tube segments extending longitudinally in spaced parallel relationship; a second tube bank including at least a first and a second flattened tube segments extending longitudinally in spaced parallel relationship, the second tube bank disposed behind the first tube bank with a leading edge of the second tube bank spaced from a trailing edge of the first tube bank; a fan creating an airflow across the first heat exchanger, the airflow flowing over the first tube bank prior to flowing over the second tube bank, wherein refrigerant flows in the heat exchanger in a cross-counterflow direction opposite that of the airflow direction.
    Type: Grant
    Filed: February 24, 2014
    Date of Patent: December 17, 2019
    Assignee: CARRIER CORPORATION
    Inventors: Arindom Joardar, Michael F. Taras, Mel Woldesemayat, Jack Leon Esformes, Bruce J. Poplawski, Tobias H. Sienel, Jules Ricardo Munoz
  • Publication number: 20190271492
    Abstract: A heat exchanger is provided including a first manifold, a second manifold separated from the first manifold, and a plurality of heat exchanger tubes arranged in spaced parallel relationship fluidly coupling the first and second manifolds. A first end of each heat exchange tube extends partially into an inner volume of the first manifold and has an inlet formed therein. A distributor is positioned within the inner volume of the first manifold. At least a portion of the distributor is arranged within the inlet formed in the first end of one or more of the plurality of heat exchange tubes.
    Type: Application
    Filed: April 30, 2019
    Publication date: September 5, 2019
    Inventors: Michael F. Taras, Tobias H. Sienel, Kazuo Saito, Arindom Joardar, Bruce J. Poplawski
  • Publication number: 20190178580
    Abstract: A multiple bank, flattened tube heat exchange unit includes a first tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold and a second tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold, the second tube bank disposed behind the first tube bank. The second manifold of the first tube bank and the second manifold of the second tube bank form a manifold assembly wherein an interior volume of the second manifold of the first tube bank and an interior volume of the second manifold of the second tube bank of the manifold assembly are internally connected in fluid communication.
    Type: Application
    Filed: February 13, 2019
    Publication date: June 13, 2019
    Inventors: Michael F. Taras, Arindom Joardar, Tobias H. Sienel, Mel Woldesemayat, Bruce J. Poplawski
  • Patent number: 10288331
    Abstract: A heat exchanger is provided including a first manifold, a second manifold separated from the first manifold, and a plurality of heat exchanger tubes arranged in spaced parallel relationship fluidly coupling the first and second manifolds. A first end of each heat exchange tube extends partially into an inner volume of the first manifold and has an inlet formed therein. A distributor is positioned within the inner volume of the first manifold. At least a portion of the distributor is arranged within the inlet formed in the first end of one or more of the plurality of heat exchange tubes.
    Type: Grant
    Filed: August 19, 2015
    Date of Patent: May 14, 2019
    Assignee: CARRIER CORPORATION
    Inventors: Michael F. Taras, Tobias H. Sienel, Kazuo Saito, Arindom Joardar, Bruce J. Poplawski
  • Patent number: 10247481
    Abstract: A multiple bank, flattened tube heat exchange unit includes a first tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold and a second tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold, the second tube bank disposed behind the first tube bank. The second manifold of the first tube bank and the second manifold of the second tube bank form a manifold assembly wherein an interior volume of the second manifold of the first tube bank and an interior volume of the second manifold of the second tube bank of the manifold assembly are internally connected in fluid communication.
    Type: Grant
    Filed: November 25, 2013
    Date of Patent: April 2, 2019
    Assignee: CARRIER CORPORATION
    Inventors: Michael F. Taras, Arindom Joardar, Tobias H. Sienel, Mel Woldesemayat, Bruce J. Poplawski
  • Publication number: 20180306533
    Abstract: A heat exchanger may be a refrigeration heat exchanger including a plurality of fins having a fin density greater than ten fins per inch, or may be a heat pump heat exchanger having a fin density of greater than eighteen fins per inch. Either heat exchanger includes a hydrophobic coating disposed on the plurality of fins for limiting the accumulation of frost.
    Type: Application
    Filed: October 18, 2016
    Publication date: October 25, 2018
    Applicant: Carrier Corporation
    Inventors: Abbas A. Alahyari, Jack Leon Esformes, Tobias H. Sienel, Michael F. Taras
  • Publication number: 20180299205
    Abstract: A heat exchanger is provided including a first header, a second header, and a plurality of heat exchange tubes arranged in a spaced parallel relationship and fluidly coupling the first and second headers. At least one of the first header, second header and the plurality of heat exchange tubes includes a bend. The heat exchanger having an aspect ratio between about 2 and 6 after formation of the bend.
    Type: Application
    Filed: October 12, 2015
    Publication date: October 18, 2018
    Inventors: Charbel Rahhal, Kazuo Saito, Michael F. Taras, Tobias H. Sienel, Arindom Joardar, Lee G. Tetu, Jackie S. Anderson
  • Publication number: 20170276411
    Abstract: A heat exchanger is provided including a first manifold, a second manifold separated from the first manifold, and a plurality of heat exchanger tubes arranged in spaced parallel relationship fluidly coupling the first and second manifolds. A first end of each heat exchange tube extends partially into an inner volume of the first manifold and has an inlet formed therein. A distributor is positioned within the inner volume of the first manifold.
    Type: Application
    Filed: August 19, 2015
    Publication date: September 28, 2017
    Inventors: Michael F. Taras, Tobias H. Sienel, Kazuo Saito, Arindom Joardar, Bruce J. Poplawski
  • Publication number: 20160116230
    Abstract: A method is provided for manufacturing a manifold assembly with internal fluid communication between a first manifold defining a first fluid chamber and a second manifold defining a second fluid chamber of the manifold assembly, the first manifold and the second manifold joined in parallel relationship along a longitudinally extending interface between a wall of the first manifold and a wall of the second manifold. The method includes: forming a first access port in a wall of one of the first manifold and the second manifold diametrically opposite the interface; forming a first fluid communication port extending through a wall of the first manifold and a wall of the second manifold at the interface and defining a first fluid passage between the first and second fluid chambers; and sealingly plugging the access port.
    Type: Application
    Filed: May 12, 2014
    Publication date: April 28, 2016
    Applicant: Carrier Corporation
    Inventors: Michael F. Taras, Bruce J. Poplawski, Arindom Joardar, Jack Leon Esformes, Tobias H. Sienel, Mel Woldesemayat
  • Publication number: 20160033182
    Abstract: An air-cooled chiller system includes a heat exchanger including a first tube bank including at least a first and a second flattened tube segments extending longitudinally in spaced parallel relationship; a second tube bank including at least a first and a second flattened tube segments extending longitudinally in spaced parallel relationship, the second tube bank disposed behind the first tube bank with a leading edge of the second tube bank spaced from a trailing edge of the first tube bank; a fan creating an airflow across the first heat exchanger, the airflow flowing over the first tube bank prior to flowing over the second tube bank, wherein refrigerant flows in the heat exchanger in a cross-counterflow direction opposite that of the airflow direction.
    Type: Application
    Filed: February 24, 2014
    Publication date: February 4, 2016
    Inventors: Arindom Joardar, Michael F. Taras, Mel Woldesemayat, Jack Leon Esformes, Bruce J. Poplawski, Tobias H. Sienel, Jules Ricardo Munoz
  • Publication number: 20160003545
    Abstract: A multiple bank, flattened tube heat exchange unit includes a first tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold and a second tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship between a first manifold and a second manifold, the second tube bank disposed behind the first tube bank. The second manifold of the first tube bank and the second manifold of the second tube bank form a manifold assembly wherein an interior volume of the second manifold of the first tube bank and an interior volume of the second manifold of the second tube bank of the manifold assembly are internally connected in fluid communication.
    Type: Application
    Filed: November 25, 2013
    Publication date: January 7, 2016
    Inventors: Michael F. Taras, Arindom Joardar, Tobias H. Sienel, Mel Woldesemayat, Bruce J. Poplawski
  • Publication number: 20150377561
    Abstract: A multiple bank, flattened tube, finned heat exchanger includes a first tube bank including a plurality of flattened heat exchange tube segments extending longitudinally and arrayed in spaced parallel relationship between a first manifold and a second manifold and a second tube bank including a plurality of flattened tube segments extending longitudinally and arrayed in spaced parallel relationship between a first manifold and a second manifold, the second tube bank disposed in spaced relationship with and behind the first tube bank. A folded fin is disposed between each set of adjacent heat exchange tube segments of the first and second tube banks. Each folded fin extends between a respective set of adjacent heat exchange tube segments of both the first tube bank and the second tube bank, spanning the spacing gap between the tube banks. A plurality of fin notches protrude outwardly from each folded fin into the spacing gap.
    Type: Application
    Filed: December 4, 2013
    Publication date: December 31, 2015
    Inventors: Michael F. Taras, Arindom Joardar, Tobias H. Sienel, Mel Woldesemayat, Bruce J. Poplawski
  • Publication number: 20150357665
    Abstract: A system and method satisfies temperature and pressure requirements of solid oxide fuel cell system in a manner that increases the overall efficiency and decreases the overall weight of system. The system and method include a secondary blower for boosting air stream pressure level sufficient for operation of a reformer that is designed to minimize pressure drop; an integrated heat exchanger for recovering heat from exhaust and comprising multiple flow fields for ensuring inlet temperature requirements of a solid oxide fuel cell are met; and a thermal enclosure for separating hot zone components from cool zone components for increasing thermal efficiency of the system and better thermal management.
    Type: Application
    Filed: August 20, 2015
    Publication date: December 10, 2015
    Inventors: Robert J. Braun, Sean C. Emerson, Justin R. Hawkes, Ellen Y. Sun, Jean Yamanis, Tobias H. Sienel, Balbir Singh Bal, Stuart Anthony Astley, Thomas D. Radcliffe, James T. Beals, Walter H. Borst, JR., May L. Corn, Louis Chiappetta, JR., John T. Costello, Robert R. Hebert, Thomas Henry Vanderspurt
  • Patent number: 9147894
    Abstract: A system and method satisfies temperature and pressure requirements of solid oxide fuel cell system 10 in a manner that increases the overall efficiency and decreases the overall weight of system 10. The system and method include a secondary blower 30 for boosting air stream pressure level sufficient for operation of a reformer 12 that is designed to minimize pressure drop; an integrated heat exchanger 18 for recovering heat from exhaust 36 and comprising multiple flow fields 18A, 18B, 18C for ensuring inlet temperature requirements of a solid oxide fuel cell 14 are met; and a thermal enclosure 46 for separating hot zone 48 components from cool zone 50 components for increasing thermal efficiency of the system and better thermal management.
    Type: Grant
    Filed: January 9, 2009
    Date of Patent: September 29, 2015
    Assignee: Ballard Power Systems Inc.
    Inventors: Robert J. Braun, Sean C. Emerson, Justin R. Hawkes, Ellen Y. Sun, Jean Yamanis, Tobias H. Sienel, Balbir Singh Bal, Stuart Anthony Astley, Thomas D. Radcliffe, James T. Beals, Walter H. Borst, Jr., May L. Corn, Louis Chiappetta, Jr., John T. Costello, Robert R. Hebert, Thomas Henry Vanderspurt
  • Patent number: 8893520
    Abstract: A refrigeration device containing CO2 a refrigerant to be circulated, including a compressor, a heat-rejecting heat exchanger, an expansion, and an evaporator which are connected to one another. The refrigeration device includes a first portion and a second portion, the second portion having a higher temperature relative to the first portion when the refrigeration device is in operation. A heat-reclaim heat exchanger is provided at a given location in the second portion, provided to transfer heat to a fluid for further use as a source of heated fluid.
    Type: Grant
    Filed: December 17, 2010
    Date of Patent: November 25, 2014
    Assignee: Carrier Corporation
    Inventors: Bernd Heinbokel, Siegfried Haaf, Neelkanth S. Gupte, Ulf J. Jonsson, Tobias H. Sienel
  • Publication number: 20140311720
    Abstract: A multiple bank, flattened tube heat exchange unit includes a first tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship and a second tube bank including a plurality of flattened tube segments extending longitudinally in spaced parallel relationship, the second tube bank disposed behind the first tube bank at a desired spacing gap. A first plurality of folded fins is disposed between respective adjacent pairs of the heat exchange tube segments of the first tube bank and a second plurality of folded fins disposed between respective adjacent pairs of the heat exchange tube segments of the second tube bank.
    Type: Application
    Filed: March 14, 2014
    Publication date: October 23, 2014
    Applicant: Carrier Corporation
    Inventors: Michael F. Taras, Arindom Joardar, Tobias H. Sienel, Mel Woldesemayat, Bruce J. Poplawski
  • Patent number: 8378205
    Abstract: A thermoelectric effects materials based energy transduction device, for selectively providing conversions between electrical and thermal energies having interleaved n-type conductivity material layers having thermoelectric effects properties and a first plurality of p-type conductivity material layers each having thermoelectric effects properties. There is a first plurality of passageway structures each being thermally conductive and each having passageways therethrough extending between two sides thereof with such a passageway structure from this first plurality thereof positioned between members of each overlapped pair of succeeding layers.
    Type: Grant
    Filed: September 29, 2006
    Date of Patent: February 19, 2013
    Assignee: United Technologies Corporation
    Inventor: Tobias H. Sienel
  • Publication number: 20120045701
    Abstract: A system and method satisfies temperature and pressure requirements of solid oxide fuel cell system 10 in a manner that increases the overall efficiency and decreases the overall weight of system 10. The system and method include a secondary blower 30 for boosting air stream pressure level sufficient for operation of a reformer 12 that is designed to minimize pressure drop; an integrated heat exchanger 18 for recovering heat from exhaust 36 and comprising multiple flow fields 18A, 18B, 18C for ensuring inlet temperature requirements of a solid oxide fuel cell 14 are met; and a thermal enclosure 46 for separating hot zone 48 components from cool zone 50 components for increasing thermal efficiency of the system and better thermal management.
    Type: Application
    Filed: January 9, 2009
    Publication date: February 23, 2012
    Applicant: UTC POWER CORPORATION
    Inventors: Robert J. Braun, Sean C. Emerson, Justin R. Hawkes, Ellen Y. Sun, Jean Yamanis, Tobias H. Sienel, Balbir Singh Bal, Stuart Anthony Astley, Thomas D. Radcliffe, James T. Beals, Walter H. Borst, JR., May L. Corn, Louis Chiappetta, JR., John T. Costello, Robert R. Hebert, Thomas Henry Vanderspurt
  • Publication number: 20110314843
    Abstract: A refrigeration device containing CO2 a refrigerant to be circulated, including a compressor, a heat-rejecting heat exchanger, an expansion, and an evaporator which are connected to one another. The refrigeration device includes a first portion and a second portion, the second portion having a higher temperature relative to the first portion when the refrigeration device is in operation. A heat-reclaim heat exchanger is provided at a given location in the second portion, provided to transfer heat to a fluid for further use as a source of heated fluid.
    Type: Application
    Filed: December 17, 2010
    Publication date: December 29, 2011
    Inventors: Bernd Heinbokel, Siegfried Haaf, Neelkanth S. Gupte, Ulf J. Jonsson, Tobias H. Sienel