A fuel delivery system for delivering fuel from a fuel tank to an engine includes a reservoir disposed within the fuel tank and a fuel pump, such as an electrically driven fuel pump, operable to draw fuel from within the reservoir. The fuel pump has a first port and a second port that independently
A fuel delivery system for delivering fuel from a fuel tank to an engine includes a reservoir disposed within the fuel tank and a fuel pump, such as an electrically driven fuel pump, operable to draw fuel from within the reservoir. The fuel pump has a first port and a second port that independently discharge the fuel from the fuel pump. A first jet pump is operable to draw the fuel within the fuel tank into the reservoir. A first flow path communicates between the first port and the engine. A second flow path communicates between the second port and the first jet pump, so that the fuel within the fuel tank is transferred into the reservoir due to the flow of the fuel supplied to the first jet pump via the second flow path.
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This invention claims: 1. A fuel delivery system for delivering fuel from a fuel tank to an engine, comprising: a reservoir disposed within the fuel tank; a fuel pump arranged and constructed to draw the fuel from within the reservoir, wherein the fuel pump has a longitudinal axis in a vertical dir
This invention claims: 1. A fuel delivery system for delivering fuel from a fuel tank to an engine, comprising: a reservoir disposed within the fuel tank; a fuel pump arranged and constructed to draw the fuel from within the reservoir, wherein the fuel pump has a longitudinal axis in a vertical direction and has a suction section disposed on the lower side of the fuel pump and a first port and a second port disposed on the upper side opposite to the suction section, the first port and the second port discharging the fuel from the fuel pump; a first jet pump arranged and constructed to draw the fuel from within the fuel tank into the reservoir; a first flow path communicating between the first port and the engine; a second flow path communicating between the second port and the first jet pump, so that the fuel within the fuel tank is transferred into the reservoir due to the flow of the fuel supplied to the first jet pump via the second flow path. 2. The fuel delivery system as in claim 1, wherein the first port is a main discharge port and the second port is a relief port for discharging a portion of the fuel other than another portion of fuel discharged from the first port. 3. The fuel delivery system as in claim 2, further including a relief valve mechanism disposed in the second flow path, so that a part of the fuel is released from the second flow path via the relief valve mechanism when a fuel pressure within the second flow path exceeds a predetermined value. 4. The fuel delivery system as in claim 1, wherein the first jet pump is disposed on the reservoir. 5. The fuel delivery system as in claim 4, wherein the first jet pump is formed integrally with the reservoir. 6. The fuel delivery system as in claim 1, wherein the first jet pump is disposed outside of the reservoir. 7. The fuel delivery system as in claim 1, further comprising: a fuel filter disposed in the first flow path; a pressure regulator coupled to the fuel filter and having a return port, so that a surplus fuel within the fuel filter is discharged from the return port; a second jet pump arranged and constructed to draw the fuel within the fuel tank into the reservoir; and a third flow path communicating between the return port and the second jet pump, so that the fuel within the fuel tank is transferred into the reservoir due to the flow of the fuel supplied to the second jet pump via the third flow path. 8. The fuel delivery system as in claim 7, wherein: the fuel tank has a first tank chamber and a second tank chamber separately defined within the fuel tank, the first jet pump and the second jet pump are disposed in order to transfer the fuel contained within the first tank chamber and the second tank chamber to the reservoir. 9. The fuel delivery system as in claim 8, wherein the reservoir is disposed within the first tank chamber. 10. The fuel delivery system as in claim 9, wherein the first jet pump is disposed within the second tank chamber and the second jet pump is disposed within the first tank chamber. 11. The fuel delivery system as in claim 10, wherein the second flow path extends from the first tank chamber to the outside of the fuel tank and then extends into the second tank chamber. 12. The fuel delivery system as in claim 11, further including a device for resiliently maintaining the position of the first jet pump in a position adjacent to a bottom of the second tank chamber. 13. The fuel delivery system as in claim 9, wherein the first jet pump is disposed within the first tank chamber and the second jet pump is disposed within the second tank chamber. 14. The fuel delivery system as in claim 13, wherein the third flow path extends from the first tank chamber to the outside of the fuel tank and then extends into the second tank chamber. 15. The fuel delivery system as in claim 14, further including a device for maintaining the position of the second jet pump in a position adjacent to a bottom of the second tank chamber. 16. A fuel delivery system for delivering fuel from a fuel tank to an engine, comprising: a reservoir disposed within the fuel tank; a fuel pump arranged and constructed to draw the fuel from within the reservoir, comprising; a first port; and a second port; wherein the first port and the second port independently discharge the fuel from the fuel pump; a first jet pump arranged and constructed to draw the fuel from within the fuel tank into the reservoir; a first flow path communicating between the first port and the engine comprising; a fuel filter comprising; a pressure regulator comprising; a return port; wherein the fuel filter operates to filter fuel transferred within the first flow path; and wherein the pressure regulator is constructed so as to release a portion of the fuel within the first flow path when a fluid pressure of the fuel within the first flow path exceeds a predetermined pressure value; and wherein the return port is constructed to direct the flow of the portion of the fuel within the first flow path released by the pressure regulator; and a second flow path communicating between the second port and the first jet pump, wherein the second flow path enables the transfer of fuel from within the fuel tank to the reservoir. 17. The fuel delivery system as in claim 16, further comprising: a third flow path communicating between the return port and a second jet pump, wherein the third flow path enables the additional transfer of fuel from within the fuel tank to the reservoir. 18. The fuel delivery system as in claim 17, further comprising: a first chamber in the fuel tank, and a second chamber in the fuel tank; wherein the first jet pump is located in one of the first chamber and the second chamber; and wherein the second jet pump is located in the other of the first chamber and the second chamber. 19. The fuel delivery system as in claim 18, further comprising: a check valve located within the first port; wherein the check valve enables the first flow path to maintain a residual pressure after the fuel pump stops operating. 20. The fuel delivery system as in claim 16, further comprising: a relief valve mechanism disposed in the second flow path, wherein the relief valve mechanism is constructed so as to allow a portion of the fuel within the second flow path to exit the second flow path via the relief valve mechanism when the fluid pressure of the fuel within the second flow path exceeds a predetermined value.
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이 특허에 인용된 특허 (12)
Laue Klaus-Bernhard (Asberg DEX) Mielich Karl (Baldham DEX) Frank Kurt (Schorndorf-Haubersbronn DEX) Schmid Werner (Tamm DEX) Soyer Wolfgang (Wiernsheim DEX) Kuppel Hans-Joachim (Mnchen DEX) Kegel He, Arrangement for supplying fuel from supply tank to internal combustion engine of motor vehicle.
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