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PRESSURE-CONTROL TEMPERATURE-CONTROL HYPERGRAVITY EXPERIMENTAL DEVICE FOR SIMULATING DEEP SEA SEABED RESPONSES

机译:模拟深海响应的压力控制温度控制超重力实验装置

摘要

A pressure-control temperature-control hypergravity experimental device for simulating deep sea seabed responses, comprising a high pressure reactor (1), a hydraulic oil station (18), a manifold board (31), a hypergravity water pressure control module, a hypergravity mining control module, a kettle body temperature control module, and data collection box (28), wherein the hydraulic oil station (18) is connected to the manifold board (31) by means of an oil pipe centrifuge rotary joint (30) after which two paths are formed, and the two paths are connected to the high pressure reactor (1) by means of the hypergravity water pressure control module and the hypergravity mining control module respectively; the kettle body temperature control module is connected to the high pressure reactor (1) by means of a water bath passage centrifuge rotary joint (2); the high pressure reactor (1), the manifold board (31), the data collection box (28), the hypergravity water pressure control module and the hypergravity mining control module are disposed on a hypergravity centrifuge in an air conditioning chamber (36) of the hypergravity centrifuge, and the hydraulic oil station (18), a computer (29) and the kettle body temperature control module are disposed outside of the air conditioning chamber (36) of the hypergravity centrifuge; the high pressure reactor (1), the hypergravity mining control module, the hypergravity water pressure control module, and a sensor in the kettle body temperature control module are all connected to the data collection box (28). The device may realistically simulate a deep sea high pressure and low temperature environment, carry out hypergravity experimental research on natural gas hydrate mining, reservoir evolution and catastrophe multi-mode processes of the deep sea, and provide scientific support for simulating energy mining in the deep sea.
机译:一种模拟深海海床响应的压力控制温控超重力实验装置,包括高压反应器(1),液压油站(18),歧管板(31),超重力水压控制模块,超重力采矿控制模块,釜体温度控制模块和数据收集箱(28),其中液压油站(18)通过油管离心机旋转接头(30)连接到歧管板(31)形成两条路径,两条路径分别通过超重力水压控制模块和超重力开采控制模块连接至高压反应器(1)。釜体温度控制模块通过水浴通道离心机旋转接头(2)与高压反应器(1)连接;高压反应器(1),歧管板(31),数据收集箱(28),超重力水压控制模块和超重力采矿控制模块设置在超重力离心机的空调室(36)中超重力离心机,液压油站(18),计算机(29)和釜体温度控制模块设置在超重力离心机的空调室(36)的外部。高压反应器(1),超重力开采控制模块,超重力水压控制模块和釜体温度控制模块中的传感器均连接至数据收集箱(28)。该装置可以现实地模拟深海高压低温环境,进行天然气水合物开采,深海储层演化和巨灾多模过程的超重力实验研究,为模拟深海能源开采提供科学支持。海。

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