Cryogenic plumbing support for vehicles
09845919 · 2017-12-19
Assignee
Inventors
- Robbi Lynn McDonald (Richmond, CA)
- Ankur Harshkant Vayeda (Vancouver, CA)
- Gregory Charles Harper (Delta, CA)
Cpc classification
F17C13/084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C13/083
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2223/033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2223/0161
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0196
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/0171
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F17C13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A cryogenic plumbing support for supporting cryogenic plumbing having a first coefficient of thermal expansion associated with a cryogenic temperature may include a bracket. The bracket may include a second coefficient of thermal expansion approximately equal to the first coefficient of thermal expansion. The cryogenic plumbing support may also include a slide assembly. The slide assembly may include first and second end blocks, at least one slider, and a plurality of rods. The first end block may be coupled in spaced relationship to the second end block by the plurality of rods. The at least one slider may be coupled to the bracket and slidably coupled to the plurality of rods.
Claims
1. A storage container for storing a gaseous fluid in a cryogenic state, the storage container comprising: a head; a manifold coupled to the head; a cryogenic plumbing assembly fluidly coupled to the manifold; a slide assembly including first and second end blocks, at least one slider, and a plurality of rods, the first end block coupled in spaced relationship to the second end block by the plurality of rods, the at least one slider slideably coupled to the plurality of rods, the at least one slider coupled to the cryogenic plumbing assembly; first and second support blocks disposed on the head; and a plurality of posts, the first and second end blocks coupled to the plurality of posts, at least one post of the plurality of posts extending from the first support block, at least one other post of the plurality of posts extending from the second support block.
2. The storage container of claim 1, further including a bracket coupling the cryogenic plumbing assembly to the at least one slider.
3. The storage container of claim 2, wherein the bracket and the cryogenic plumbing assembly have approximately similar coefficients of thermal expansion associated with a cryogenic temperature.
4. The storage container of claim 2, wherein the bracket includes a plurality of apertures, the plurality of apertures receive the plurality of posts such that a clearance is provided between each aperture of the plurality of apertures and each corresponding post of the plurality of posts.
5. The storage container of claim 2, wherein the bracket includes a longitudinal expanse disposed between a first end and a second end, a first flange extends outwardly from the longitudinal expanse proximate the first end, a second flange extends outwardly from the longitudinal expanse, in an opposite direction to the first flange, proximate the second end.
6. The storage container of claim 5, further including a container flange disposed on the head, a plate is mounted to the container flange, the manifold is mounted to the plate, the first end of the bracket is secured to the plate.
7. The storage container of claim 1, wherein the cryogenic plumbing assembly is clamped to the bracket.
8. The storage container of claim 1, wherein the first end block is adjustably coupled to the at least one post of the plurality of posts and the second end block is adjustably coupled to the at least one other post of the plurality of posts.
9. The storage container of claim 1, wherein the cryogenic plumbing assembly includes one of a plumbing grouping, a 4-way manifold, a first hand valve, a second hand valve, a delivery tube, and a plumbing member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For further understanding of the disclosed concepts and embodiments, reference may be made to the following detailed description, read in connection with the drawings, wherein like elements are numbered alike, and in which:
(2)
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(7) It is to be noted that the appended drawings illustrate only typical embodiments and are therefore not to be considered limiting with respect to the scope of the disclosure or claims. Rather, the concepts of the present disclosure may apply within other equally effective embodiments. Moreover, the drawings are not necessarily to scale, emphasis generally being placed upon illustrating the principles of certain embodiments.
DETAILED DESCRIPTION
(8) The present disclosure provides systems and methods for supporting the cryogenic plumbing on a vehicle. Such systems and methods may support the cryogenic plumbing to allow for thermal contraction of the cryogenic plumbing. Such systems and methods may also support the cryogenic plumbing to accommodate for vertical shock loads in a mobile environment.
(9) Referring now to
(10) The pump tubes 20 are also fluidly coupled to a manifold 22 via connecting tubes 24 extending from a first side 26 of the manifold 22. A cryogenic plumbing assembly 28 may be fluidly coupled to a second side 30 of the manifold 22. The first side 26 may be orthogonal to the second side 30. The cryogenic plumbing assembly 28 may include a plumbing grouping 32, a 4-way manifold 34, first and second hand valves 36, 38, a delivery tube 40, and a plumbing member 42. The plumbing grouping 32, the second hand valve 38, the delivery tube 40, and the plumbing member 42 may all be fluidly coupled to the 4-way manifold 34 such that the plumbing grouping 32 may be disposed opposite the second hand valve 38 and the plumbing member 42 may be disposed opposite the delivery tube 40. The delivery tube 40 may include a fitting 44, which may be coupled to a vehicle. The first hand valve 36 may be operationally coupled to the plumbing grouping 32. The plumbing member 42 may be, but not limited to, a pressure relief valve (PRV) having an outlet end that may be coupled to a vent piping via a flexible line.
(11) As best seen in
(12) The cryogenic plumbing assembly 28 may be supported by, and be in thermal contact with, the support bracket 50 of the support assembly 48 in such a way that the second hand valve 38 may be coupled to the longitudinal expanse 58 adjacent the second end 56; the 4-way manifold 34 may be coupled to the longitudinal expanse 58 adjacent the plurality of apertures 64; the plumbing member 42 may be coupled to the member flange 62 via an L-bracket 65; the plumbing grouping 32 may be coupled to the longitudinal expanse 58 between the first end 54 and the plurality of apertures 64; the first hand valve 36 may be coupled to the valve flange 60; and the delivery tube 40 may also be coupled to the valve flange 60. The first and second hand valves 36, 38, the 4-way manifold 34, the plumbing grouping 32 and the delivery tube 40 may be coupled to the support bracket 50 by a plurality of clamps 66 or other suitable means known in the industry. The cryogenic plumbing assembly 28 and the support bracket 50 may be manufactured from similar materials known in the industry that have approximately similar coefficients of thermal expansion (CTE) associated with cryogenic temperatures.
(13) The slide assembly 52 may include at least one slider 68 that is operationally slidable between first and second end blocks 70, 72. The first end block 70 may be coupled to the second end block 72 by a plurality of rods 74 along which the at least one slider 68 may slide. The slide assembly 52 may also include a plurality of posts 76 and first and second support blocks 78, 80. First and second support blocks 78, 80 may be disposed on the head 12 of the storage container 10 and spaced apart from each other. The first and second support blocks 78, 80 securely support the plurality of posts 76 so that at least two posts of the plurality of posts 76 extend outwardly from each of the first and second support blocks 78, 80. In such a manner, the first end block 70 may be adjustably secured to the plurality of posts 76 corresponding with the first support block 78 such that the first end block 70 and the first support block 78 are in spaced relationship with each other. Similarly, the second end block 72 may be adjustably secured to the plurality of posts 76 corresponding with the second support block 80 such that the second end block 72 and the second support block 80 are in spaced relationship with each other. The at least one slider 68 may be manufactured from a polytetrafluoroethylene material or similar material known in the industry.
(14) As best shown in
(15) In an exemplary alternative embodiment depicted in
(16)
(17) While the present disclosure has shown and described details of exemplary embodiments, it will be understood by one skilled in the art that various changes in detail may be effected therein without departing from the spirit and scope of the disclosure as defined by claims supported by the written description and drawings. Further, where these exemplary embodiments (and other related derivations) are described with reference to a certain number of elements it will be understood that other exemplary embodiments may be practiced utilizing either less than or more than the certain number of elements.
INDUSTRIAL APPLICABILITY
(18) Based on the foregoing, it can be seen that the present disclosure sets forth systems and methods for supporting the cryogenic plumbing on a vehicle from vertical and horizontal shock loads while allowing for thermal contraction of the cryogenic plumbing. For example, during operation, the cryogenic plumbing assembly 28 undergoes thermal cycles that approximately range from ambient temperature to cryogenic temperature such as, but not limited to, LNG temperature, which may be approximately −160° C. As the temperature approaches cryogenic levels, the cryogenic plumbing assembly 28 thermally contracts towards the manifold 22, which remains stationary. In one exemplary embodiment with the cryogenic plumbing assembly 28 being in thermal contact with the support bracket 50, the support bracket 50 also undergoes thermal contraction toward the manifold 22 due to the thermal conduction between the support bracket 50 and the cryogenic plumbing 28. Moreover, the cryogenic plumbing assembly 28 and the support bracket 50 have approximately similar coefficients of thermal expansion so that both undergo thermal contraction toward the manifold 22 at approximately the same rate. Because the support bracket 50 is also coupled to the at least one slider 68, the support bracket 50 is able to thermally contract toward the manifold 22 without causing any stresses on the cryogenic plumbing assembly 28 and the plurality of posts 76 of the support assembly 48. The clearance 82 between each post of the plurality of posts 76 and each aperture of the plurality of apertures 64 is designed to also allow the support bracket 50 to thermally contract without causing any stresses on the plurality of posts 76 and the cryogenic plumbing assembly 28. The clearance 82 accommodates for the distance that the support bracket 50 contracts toward the manifold 22. While the support assembly 48 allows for thermal contraction of the cryogenic plumbing assembly 28, it also supports the cryogenic plumbing assembly 28, due to the coupling of the first and second end blocks 70, 72 to the plurality of posts 76 and the support blocks 78, 80, as well as, the coupling of the support bracket 50 to the plate 46, from any vertical and horizontal shock loads that may be experienced during movement of the vehicle.
(19) In an alternative exemplary embodiment without the support bracket 50, the cryogenic plumbing assembly 28 is directly coupled to the slide assembly 52 to accommodate for the thermal contraction of the cryogenic plumbing assembly 28 toward the manifold 22. As such, the coupling of the slide assembly 52 to the plurality of posts 76 supports the cryogenic plumbing assembly 28 from any vertical and horizontal shock loads that may be experienced during movement of the vehicle.
(20) The exemplary embodiments discussed above support the cryogenic plumbing of a vehicle onto a storage container having ambient temperatures. The exemplary embodiments may be useful for vehicles that have space restrictions and cannot accommodate the use of large space-restrictive components such as expensive insulated cryogenic plumbing supports and/or flexible hoses, bellows, or bends found in prior art cryogenic plumbing. Additionally, the exemplary embodiments may use rigid piping and tubing in the cryogenic plumbing and, as such, may be utilized in applications that employ high-pressure direct-injection (HPDI) systems, which require rigid piping and tubing to accommodate for the high pressure. Moreover, the slide assembly includes tight tolerances that enable the handling of the vertical and horizontal shock loads, which are not accommodated for in prior supports for stationary applications because these prior supports typically lack tight tolerances and are only capable of withstanding the downward gravity load.