首页> 外国专利> PIPELINE TRANSFER PROCESS SIMULATOR FOR CARBON DIOXIDE MARINE UNDERGROUND STORAGE, CAPABLE OF REDUCING THE NEGATIVE EFFECT OF SOLID LUGGAGE DURING TRANSFER

PIPELINE TRANSFER PROCESS SIMULATOR FOR CARBON DIOXIDE MARINE UNDERGROUND STORAGE, CAPABLE OF REDUCING THE NEGATIVE EFFECT OF SOLID LUGGAGE DURING TRANSFER

机译:二氧化碳海洋地下存储的管道传输过程仿真器,能够减少固体行李在传输过程中的负面影响

摘要

PURPOSE: A pipeline transfer process simulator for carbon dioxide marine underground storage is provided to reduce the manufacturing cost of an experiment device by configuring the experiment device performing a reservoir role using a pipe of a large diameter instead of a high pressure container.;CONSTITUTION: A pipeline transfer process simulator for carbon dioxide marine underground storage comprises a low-pressure pipe reservoir(10), an inlet part(20), a high-pressure pump(30), an accumulator(40), a first pressure adjusting valve(50), a cooler(60), a heater(70), a simulation period test part(80), and a second pressure adjusting valve(90). The low-pressure pipe reservoir is formed into a pipe shape in order to store carbon dioxide in a liquid state. The inlet part is connected to one side of the low-pressure pipe reservoir with a main pipe(27). The high-pressure pump transfers the liquid carbon dioxide into an experiment device. The accumulator is charged with high pressure gas in order to suppress the pulsation generated by the high-pressure pump. The first pressure adjusting valve re-suppresses the pulsation by controlling the pressure of the carbon dioxide. The cooler changes the carbon dioxide into a subcooled liquid state. The heater heats in order to change the carbon dioxide into a supercritical state. The simulation period test part is connected to the heater. The second pressure adjusting valve is connected and installed between the simulation period test part and the low-pressure pipe reservoir.;COPYRIGHT KIPO 2010
机译:目的:提供了一种用于二氧化碳海洋地下存储的管道传输过程模拟器,以通过配置实验设备使用大直径的管道而不是高压容器来执行实验功能,从而降低实验设备的制造成本。用于二氧化碳海洋地下存储的管道传输过程模拟器包括低压管道储器(10),入口部分(20),高压泵(30),蓄能器(40),第一压力调节阀( 50),冷却器(60),加热器(70),模拟期间试验部(80)和第二压力调节阀(90)。低压管贮存器形成为管状,以便以液态存储二氧化碳。入口部分通过主管(27)连接到低压管贮存器的一侧。高压泵将液态二氧化碳转移到实验装置中。为了抑制高压泵产生的脉动,蓄压器中充有高压气体。第一压力调节阀通过控制二氧化碳的压力来重新抑制脉动。冷却器将二氧化碳变成过冷的液态。加热器加热以将二氧化碳改变为超临界状态。模拟时间测试部分连接到加热器。第二个压力调节阀连接并安装在模拟期间测试部分和低压管道储罐之间。; COPYRIGHT KIPO 2010

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