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Dynamic heat sink engine

  • US 7,047,744 B1
  • Filed: 09/16/2004
  • Issued: 05/23/2006
  • Est. Priority Date: 09/16/2004
  • Status: Expired due to Fees
First Claim
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1. A dynamic heat sink engine, comprising:

  • a. a storage vessel, having a working fluid outlet, a working fluid inlet, a vapor outlet, and a liquid inlet, a lower portion of said storage vessel containing a working fluid in liquid form, at or near its boiling point;

    b. a first working fluid circuit extending between said working fluid outlet and said working fluid inlet;

    c. a liquid pump having an inlet and an outlet, a first stream of said first working circuit extending between said working fluid outlet and said pump inlet;

    d. a vaporizer having a liquid line and a vapor line passing therethrough, said vaporizer including heat exchanger means therein in thermal communication with said liquid line and said vapor line, a second stream of said first working circuit extending between said pump outlet and a first end of said liquid line;

    e. a heater having an inlet and an outlet, a third stream of said first working circuit extending between a second end of said liquid line and said inlet of said heater;

    f. an expansion engine having an inlet, an outlet, and a rotary output shaft a fourth stream of said first working circuit extending between said outlet of said heater and said inlet of said expansion engine;

    g. an electrical generator connected to said rotary output shaft of said expansion engine;

    h. a fifth stream of said first working circuit extending between said outlet of said expansion engine and a first end of said vapor line;

    i. a sixth stream of said first working circuit extending between a second end of said vapor line and said working fluid inlet, whereby working liquid is pumped to a higher pressure by said pump, vaporized by said heat exchanger means, further heated by said heater, expanded isentropically in said expansion engine whereby said rotary output shaft drives said generator producing electricity, and whereby said working fluid passes through said fifth stream of said first working circuit in a super-heated state and at a pressure that is higher than the pressure in said storage vessel, said working fluid is partially cooled passing through said heat exchanger means and passes through said sixth stream of said first working circuit and expanded adiabiatically into said storage vessel for its temperature to match that of the fluid in said vessel.

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