Claims
- 1. A cooled steam jet for transferring fluid comprising:
- a. a source of fluid to be transferred;
- b. a source of steam;
- c. a venturi nozzle comprising a convergent section, a diffuser section, and a throat portion disposed therebetween, said venturi nozzle being capable of producing a high velocity flow capable of creating a vacuum to draw the fluid from said source of the fluid to be transferred, said venturi nozzle being connected to said source of steam, said throat portion having a high velocity flow; and
- d. a cooling jacked disposed around said throat portion and said converging and diffuser sections of said veneturi nozzle, said cooling jacket having an inlet connected to said source of coolant and an outlet allowing said coolant to flow through said cooling jacket, thereby cooling said venturi nozzle to prevent vaporization of the fluid being transferred as the fluid is being drawn into said venturi nozzle.
- 2. A cooled steam jet as recited in claim 1, wherein said coolant comprises water.
- 3. A method for preventing vapor lock when transferring fluids, said method comprising the steps of:
- a. providing a venturi nozzle for producing a high velocity flow capable of creating a vacuum to draw the fluid from a source of the fluid to be transferred, said venturi nozzle comprising a converging section, a diffuser section, and a throat portion disposed therebetween, said venturi nozzle being connected to a source of steam, said throat portion having a high velocity flow;
- b. providing a cooling jacket disposed around said throat portion and said converging and diffuser sections of said venturi nozzle, said cooling jacket having an inlet connected to a source of coolant and an outlet capable of allowing said coolant to flow through said cooling jacket, thereby cooling said venturi nozzle to prevent vaporization of the fluid being transferred as the fluid is being drawn into said venturi nozzle;
- c. connecting said cooling jacket to said source of a coolant;
- d. activating said cooling jacket, thereby allowing said coolant to flow around said cooling jacket; and
- e. activating said venturi nozzle whereby said high velocity flow creates a vacuum to draw the fluid to be transferred into said venturi nozzle while said cooling jacket dissipates the heat generated by said venturi nozzle and prevents vapor lock.
- 4. A method for preventing vapor lock when transferring fluids as recited in claim 3, wherein said coolant comprises water.
- 5. A cooled steam jet for transferring a fluid comprising:
- a. steam jet means for producing a high velocity flow capable of creating a vacuum to draw the fluid from a source of the fluid to be transferred, said steam jet means having a steam inlet and an outlet, said steam jet means being in communication with said source of the fluid to be transferred;
- b. a suction tube through which the fluid is drawn; and
- c. cooling means, surrounding said steam jet means and a portion of the suction tube, for cooling said steam jet means to prevent vaporization of the fluid being transferred as the fluid is being drawn into said steam jet means.
CONTRACTUAL ORIGIN
The United States Government has rights in this invention disclosed under contract number DE-AC07-84ID12435 between the U.S. Department of Energy and Westinghouse Idaho Nuclear Company, now contract number DE-AC07-94ID13223 with Lockheed Idaho Technologies Company.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
554698 |
Jun 1923 |
FRX |
Non-Patent Literature Citations (1)
Entry |
Water Jet Exhausters and Compressors, Schutte & Koerting Co., Bulletin No. 4-P, pp. 4401-4414. Aug. 1934. |