IP Library Patent Application 15333144
Patent Application
App. No. 15/333,144

CRYOGENIC FLUID SYSTEM FOR MACHINE, AND METHOD OF OPERATING SAME

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Quick Facts
Patent No.
US None
App. No.
15/333,144
Abstract

A cryogenic fluid system such as a cryogenic fuel system for an engine includes a storage vessel, and a pumping mechanism with a pump positioned inside the storage vessel to be submerged in fluid stored therein. The system further includes a reciprocable pumping element operated by way of a drive mechanism including a rotatable driving element and a magnetic coupling operably between the rotatable driving element and the reciprocable pumping element.

Claims (34)

1 . A machine system comprising:

a machine;

a cryogenic fluid system including a cryogenic storage vessel, and a pumping mechanism structured to pump stored cryogenic fluid from the cryogenic storage vessel for supplying to the machine;

the pumping mechanism including a pump positioned inside the cryogenic storage vessel and having a pump housing, a reciprocable pumping element movable in a first direction to receive stored cryogenic fluid into the pump housing and in a second direction to discharge stored cryogenic fluid from the pump housing, and a drive mechanism for actuating the reciprocable pumping element;

the drive mechanism including a rotatable driving element positioned outside the cryogenic storage vessel, a rotatable driven element positioned inside the cryogenic storage vessel, and a magnetic coupling structured to transfer torque between the rotatable driving element and the rotatable driven element; and

the drive mechanism further including a rotary to linear motion converter coupled between the rotatable driven element and the reciprocable pumping element to apply a linear force to the reciprocable pumping element in response to torque applied to the rotatable driven element by the magnetic coupling.

2 . The system of claim 1 wherein the rotary to linear motion converter includes a driving surface fixed to rotate with the rotatable driven element and defining an axis of rotation, and a driven surface fixed to reciprocate with the reciprocable pumping element and in contact with the driving surface.

3 . The system of claim 2 wherein the driving surface is oriented transverse to the axis of rotation, and the reciprocable pumping element defines an axis of reciprocation that is parallel to the axis of rotation.

4 . The system of claim 3 wherein the pump includes a swash plate pump and the driving surface includes a surface of the swash plate in the swash plate pump.

5 . The system of claim 1 wherein the cryogenic fluid storage vessel includes a vessel wall, and the magnetic coupling includes a plurality of magnets positioned on each of an interior side and an opposite exterior side of the vessel wall.

6 . The system of claim 5 wherein the interior side of the vessel wall is exposed to a fluid storage volume of the cryogenic fluid storage vessel.

7 . The system of claim 5 wherein the vessel wall includes a closure to a port formed in the cryogenic fluid storage vessel.

8 . The system of claim 1 wherein the pumping mechanism includes a second pump positioned inside the cryogenic fluid storage vessel and coupled with the drive mechanism.

9 . The system of claim 8 wherein the second pump includes a second reciprocable pumping element, and wherein the pumping mechanism includes a second rotary to linear motion converter coupled between the rotatable driven element and the second reciprocable pumping element.

10 . The system of claim 9 wherein the first pump includes a pumping outlet formed in the pump housing, and the second pump includes a second pump housing having formed therein a pumping inlet fluidly connected to the pumping outlet of the first pump.

11 . The system of claim 1 wherein the machine includes a combustion engine and the cryogenic fluid system includes a fuel system, and wherein the fuel system includes a fluid conduit coupling the pumping mechanism with the combustion engine, and a vaporizer fluidly coupled with the fluid conduit.

12 . A cryogenic fluid system comprising:

a pumping mechanism including a pump having a pump housing, a reciprocable pumping element movable in a first direction to receive stored cryogenic fluid into the pump housing and in a second direction to discharge stored cryogenic fluid from the pump housing;

a cryogenic storage vessel wall;

a drive mechanism including a rotatable driving element, a rotatable driven element, and a magnetic coupling structured to transfer torque between the rotatable driving element and the rotatable driven element; and

the magnetic coupling including a first magnetic element fixed to rotate with the rotatable driving element and positioned upon an exterior side of the cryogenic storage vessel wall, a second magnetic element fixed to rotate with the rotatable driven element and positioned upon an interior side of the cryogenic storage vessel wall;

the drive mechanism further including a rotary to linear motion converter coupled between the rotatable driving element and the reciprocable pumping element to apply a linear force to the reciprocable pumping element in response to torque applied to the rotatable driving element by the magnetic coupling.

13 . The system of claim 12 wherein the pumping mechanism further includes a second pump positioned on the interior side of the cryogenic storage vessel wall and coupled with the drive mechanism.

14 . The system of claim 13 wherein the second pump includes a second reciprocable pumping element, and a second rotary to linear motion converter to apply a linear force to the second reciprocable pumping element in response to torque applied to the rotatable driving element by the magnetic coupling.

15 . The system of claim 13 wherein the first pump includes a pumping outlet, and the second pump includes a pumping inlet fluidly connected to the pumping outlet.

16 . The system of claim 15 wherein the first pump includes a first swash plate pump having a first swash plate, and the second pump includes a second swash plate pump having a second swash plate, and the first swash plate and the second swash plate are rotatable by way of the rotatable driven element about a common axis of rotation.

17 . The system of claim 16 wherein the rotatable driven element extends through the first swash plate pump.

18 . A method of operating a cryogenic fluid system comprising:

rotating a driving element positioned outside a cryogenic fluid storage vessel;

transferring torque magnetically from the driving element to a driven element positioned inside the cryogenic fluid storage vessel;

converting torque of the driven element to linear force on a pumping element in a pump at least partially submerged in cryogenic fluid within the cryogenic storage vessel; and

pumping the cryogenic fluid out of the cryogenic storage vessel at least in part by way of a reciprocation of the pumping element in response to the linear force.

19 . The method of claim 18 wherein the pumping of the cryogenic fluid further includes pumping the cryogenic fluid to a first pressurized state by way of the first pump, and further comprising pumping the cryogenic fluid to a second pressurized state that is higher than the first pressurized state by way of a second pump at least partially submerged in cryogenic fluid within the cryogenic fluid storage vessel and coupled with the driven element.

20 . The method of claim 19 wherein the cryogenic fluid includes cryogenic fluid hydrocarbon fuel, and further comprising vaporizing at least a portion of the hydrocarbon fuel in a vaporizer and conveying the hydrocarbon fuel to a combustion engine.

Assignments (2)
CHANGE OF NAME Recorded Feb 23, 2018
From: ELECTRO-MOTIVE DIESEL, INC.
To: PROGRESS RAIL LOCOMOTIVE INC.
Reel/Frame 045430/0426 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2016
From: POPADIUC, PETER
To: ELECTRO-MOTIVE DIESEL
Reel/Frame 040106/0984 →