IP Library Granted Patent US 9,784,411
Granted Patent B2
US 9,784,411 · App. 14/677,725 · Granted Oct 10, 2017

System and method for unloading compressed natural gas

Inventor: David A. Diggins (Midland, TX)
F17C7/02F17C5/06F17C7/00F17C2205/0332F17C2205/0338F17C2221/033F17C2223/0123F17C2223/035F17C2223/036F17C2225/0123F17C2225/033F17C2227/03F17C2227/0316F17C2227/0323F17C2227/0332F17C2250/01F17C2250/043F17C2250/0439F17C2250/0631F17C2260/056F17C2270/0134F17C2270/0142F17C2270/05
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Quick Facts
Patent No.
US 9,784,411
App. No.
14/677,725
Granted
Oct 10, 2017
Kind
B2
Abstract

A system and method for unloading highly pressurized compressed natural gas from transport vessels by depressurizing the gas through flow lines linking a series of automated flow control valves that lower the gas pressure to a predetermined level, the valves being linked in series with and separated by heat exchangers in which the lower pressure gas flowing through the system is also reheated to a predetermined temperature by a heat exchange medium recirculation system in which the heat exchange medium is reheated by a heat source that can be internal to the system. The use of a minor portion of the depressurized and reheated gas as fuel gas to reheat the heat exchange medium is also disclosed. The subject system can be skid-mounted if desired.

Claims (7)

1. A compressed natural gas unloading system for use in unloading highly pressurized compressed natural gas from a transport vessel, the system comprising gas flow lines enabling fluid communication between at least two automated flow control valves that are spaced apart in a flow direction and cooperate to lower the gas pressure to a predetermined level, at least one heat exchanger and a heat exchange medium recirculation system, wherein at least one heat exchanger is disposed between the at least two spaced-apart automated flow control valves and cooperates with the heat exchange medium recirculation system to heat gas flowing through the compressed natural gas unloading system to a predetermined temperature,

wherein a gas flow line disposed between the at least two spaced-apart automated flow control valves is divided into two different flow paths that each pass through a different heat exchanger and are then recombined, and

wherein a surge vessel is configured to be selectively placed in fluid communication with the recombined different flow paths.

2. A compressed natural gas unloading system for use in unloading highly pressurized compressed natural gas from a transport vessel, the system comprising gas flow lines enabling fluid communication between at least two automated flow control valves that are spaced apart in a flow direction and cooperate to lower the gas pressure to a predetermined level, at least one heat exchanger and a heat exchange medium recirculation system, wherein at least one heat exchanger is disposed between the at least two spaced-apart automated flow control valves and cooperates with the heat exchange medium recirculation system to heat gas flowing through the compressed natural gas unloading system to a predetermined temperature,

wherein the heat exchange medium recirculation system comprises a contained heat exchange medium, at least one heater for the heat exchange medium, at least one pump, and a fluid recirculation loop configured to recirculate the heat exchange medium through the heater, pump and heat exchangers; and

wherein the at least one heater is configured to be fueled by a minor portion of lower-pressure gas that is diverted to the at least one heater downstream of the last at least one heat exchanger.

3. The compressed natural gas unloading system of claim 2 wherein the minor portion of lower pressure gas that is diverted to the at least one heater downstream of the last at least one heat exchanger has a flow rate that is controlled by an automated flow control valve installed in a gas flow line to the heater.

Continuity (1)
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