Universal cryogenic gas manifold
11181237 ยท 2021-11-23
Inventors
Cpc classification
F17C13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0352
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2250/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2227/0107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A cryogenic gas manifold for use in a cryogenic gas system includes first and second interchangeable tubular headers. Each of the tubular headers has a nipple for receiving cryogenic gas from a source or for providing such cryogenic gas to a user. Each of the tubular headers has opposed branch nipples for threadedly receiving devices that interconnect at least certain of the branch nipples of the pair of tubular headers. This interconnection is by threaded engagement of at least certain devices such as regulators, valves, gauges, sensors, bypass valves, low-temperature shutoff valves, and the like. The interconnection of these various devices with the pair of headers establishes a structural integrity for the manifold. Feet may be clamped to the bottom of each of the headers to allow the manifold to be freestanding. The threaded engagement of all of the various elements makes the manifold cost-effective.
Claims
1. A cryogenic gas manifold, comprising: first and second tubular headers, each of said tubular headers being sealed closed at opposite ends thereof; said first tubular header having an input nipple extending therefrom; said second tubular header having an output nipple extending therefrom; said first and second tubular headers each having a plurality of branch nipples extending from sides thereof; and each of said first and second tubular headers having a foot clamped to a bottom end thereof.
2. The cryogenic gas manifold as recited in claim 1, wherein each said nipple defines an aperture and port in communication with a hollow interior of the first or second tubular header from which said nipple extends.
3. The cryogenic gas manifold as recited in claim 2, wherein devices are interconnected with at least certain of said branch nipples.
4. The cryogenic gas manifold as recited in claim 3, wherein certain of said devices are interposed between selected pairs of said branch nipples between said first and second tubular headers.
5. The cryogenic gas manifold as recited in claim 4, wherein certain other of said devices are singularly connected to a branch nipple of only one of said first and second tubular headers.
6. The cryogenic gas manifold as recited in claim 4, wherein multiple pairs of said devices are interconnected in parallel between multiple selected pairs of said branch nipples of each of said first and second tubular headers.
7. The cryogenic gas manifold as recited in claim 4, wherein said devices are taken from the group of regulators, valves, gauges, sensors, low-temperature shutoff valves, and bypass valves.
8. The cryogenic gas manifold as recited in claim 4, wherein said first and second tubular headers are interchangeable.
9. The cryogenic gas manifold as recited in claim 8, wherein said first and second tubular headers each have the same number of nipples.
10. The cryogenic gas manifold as recited in claim 9, wherein each of said first and second tubular headers has a nipple that can serve equally as an input nipple and an output nipple.
11. The cryogenic gas manifold as recited in claim 10, wherein said input nipple is in communication with a source of cryogenic gas and said output nipple is in communication with a user of said cryogenic gas.
12. The cryogenic gas manifold as recited in claim 4, wherein said devices are threadedly connected to and disconnectable from said nipples.
13. The cryogenic gas manifold as recited in claim 4, wherein said headers are of stainless steel construction.
14. A cryogenic gas manifold interposed between a cryogenic gas source and a user of such gas, comprising: first and second interchangeable tubular headers, each of said first and second interchangeable tubular headers being sealed closed at opposite ends thereof; each said tubular header having a nipple for receiving cryogenic gas from said source or providing it to the user; each said tubular header having opposed branch nipples; devices interconnecting at least certain of said branch nipples of said first and second tubular headers with each other, said interconnection being by threaded engagement of at least certain of said devices with certain of said branch nipples; and each of said first and second tubular headers having a foot attached to a bottom end thereof.
15. The cryogenic gas manifold as recited in claim 14, wherein said certain devices are taken from the group of regulators and valves.
16. The cryogenic gas manifold as recited in claim 15, wherein said nipples and branch nipples establish ports for passage of said cryogenic gas from a source, through said first tubular header, through said certain devices, and thence through said second tubular header and to the user.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a complete understanding of the various aspects of the invention, reference should be made to the following detailed description and accompanying drawings wherein:
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BEST MODE FOR CARRYING OUT THE INVENTION
(6) With reference to
(7) The header pipe 46 includes a plurality of branch nipples or ports 50 and an inlet/outlet nipple or port 52 as shown. The nipples 50, 52 are preferably externally threaded and define apertures 54 for the branch nipples 50 and an aperture 56 for the inlet/outlet nipple 52.
(8) With reference now to
(9) The branch nipples 50 are also populated to finish the construction of the cryogenic gas manifold 20B. A relief valve 66 may be connected to a branch nipple 50 on the inlet side of the manifold as shown. A valve with an associated pressure gauge 68 may be threadedly connected to an associated branch nipple of the header pipe 46 on the outlet side of the manifold. According to the embodiment shown, devices 70, 72 are interconnected between opposite pairs of the threaded nipples 50 between the inlet header pipe 46 and the outlet header pipe 46, as shown. According to an embodiment of the invention, these devices may comprise a pair of redundant pressure regulators connected in parallel between the inlet side and outlet side of the manifold 20B, or they may include combinations of regulators, bypass valves, low-temperature shutoff valves, and the like, depending upon the needs of the associated cryogenic gas system. For example, various combinations 74, 76 of manual valves, couplers, connectors, regulators and the like may be employed between the threaded nipples of opposite header pipes 46 to achieve any of numerous manifold configurations. It is contemplated that the devices are typically threadedly connected, allowing for ease of assembly and disassembly. The manifold 20B is self-contained between the system inlet 62 and outlet 64 as at the nipples 52. It includes branch nipples 50 that are oppositely paired to accommodate any of numerous elements therebetween. The stand, comprised of header pipes 46, is an active stand, serving as a gas conduit to the various valves, regulators, monitors and the like. Moreover, the manifold 20B can be freestanding, as accommodated by the foot clamps 60.
(10) The resulting cryogenic gas manifold 20B is not only active as compared to the prior art passive manifold stands, but it is also given to ease of assembly and disassembly, modification, and the like. Accordingly, the cryogenic gas manifold 20B of the invention is cost effective, not only from the implementation of a single design of header pipe, but also from the ease by which it can accommodate state-of-the-art gauges, monitors, valves, reducers, temperature shutoff valves, pressure regulators, and the like.
(11) Thus it can be seen that the various aspects of the invention have been satisfied by the structure presented hereinabove. While in accordance with the patent statues only the best known and preferred embodiment of the invention has been presented and described in detail, the invention is not limited thereto or thereby. Accordingly, for an appreciation of the scope and breadth of the invention, reference should be made to the following claims.