Liquefied natural gas (LNG) cold energy comprehensive utilization system and method
A technology of liquefied natural gas and natural gas, applied in applications, household appliances, steam engine installations, etc., can solve the problems of low power generation efficiency, unavailability, pressure fluctuation, etc., and achieve the effect of high power generation efficiency and lower ice-making cost.
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Embodiment 1
[0053] The liquefied natural gas cold energy comprehensive utilization system of this embodiment, such as figure 1 As shown, it includes composite Rankine cycle power generation subsystem A, ice making subsystem B and direct expansion power generation subsystem C, wherein composite Rankine cycle power generation subsystem A includes liquefied natural gas evaporator 1, mixed working medium booster pump 2, Heat exchanger 3, mixed working medium heater 4, mixed working medium evaporator 5, mixed working medium expander 6, single working medium booster pump 7, single working medium evaporator 8 and single working medium expander 9, mixed working medium The mass expander 6 and the simplex expander 9 are respectively connected to the generator. The liquefied natural gas evaporator 1 includes a first shell and a first heat exchange tube arranged in the first shell. The first shell has an LNG inlet and a first NG outlet, the first heat exchange tube has a first mixed working medium in...
Embodiment 2
[0059] The LNG parameters of a LNG receiving station are as follows: the flow rate is 150t / h, the temperature is -160°C, the pressure is 10MPa, and its composition (mol%) is 99% CH 4 , 1%C 2 h 6 . The seawater temperature is 7°C to 30°C. The network requirements of natural gas are as follows: flow rate is 150t / h, temperature is 0°C, pressure is 8.7MPa, and its composition (mol%) is 99% CH 4 , 1%C 2 h 6 .
[0060] The comprehensive utilization process of liquefied natural gas includes four parts: mixed working medium Rankine cycle power generation, single working medium Rankine cycle power generation, ice making and high-pressure natural gas direct expansion power generation. The specific steps are as follows:
[0061] (1) Mixed working medium Rankine cycle power generation: the flow rate of the mixed working medium changes with the temperature of seawater, and the energy balance of the heat exchanger 3 is ensured by adjusting the flow rate of the mixed working medium, an...
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