Floating type test platform of natural gas liquefaction system

A test platform and natural gas technology, applied in the field of test platforms, can solve the problems of unverified adaptability and achieve the effects of improving liquefaction capacity and efficiency, reducing land occupation, and reducing floor space

A test platform and natural gas technology, applied in the field of test platforms, can solve the problems of unverified adaptability and achieve the effects of improving liquefaction capacity and efficiency, reducing land occupation, and reducing floor space

CN106441964AInactive Publication Date: 2017-02-22CNOOC GAS & POWER GRP +1

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  • Floating type test platform of natural gas liquefaction system
  • Floating type test platform of natural gas liquefaction system
  • Floating type test platform of natural gas liquefaction system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0033] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0034] Such as figure 1 As shown, a test platform for a floating natural gas liquefaction system, including:

[0035] A cryogenic compression module, the cryogenic compression module is sequentially connected with a pre-cooling heat exchange module and a cryogenic heat exchange module to form a cycle;

[0036] A pre-cooling compression module, the pre-cooling compression module is connected to the pre-cooling heat exchange module to form a cycle;

[0037] LNG vaporization compression module, the LNG vaporization compression module is sequentially connected with the pre-cooling heat exchange module and the cryogenic heat exchange module to form a cycle;

[0038] The pre-cooling heat exchange module and the cryogenic heat exchange module are arranged on the shaking unit. The rocking unit is a six-degree-of-freedom rocking platform III. Install the pre-c...

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Abstract

The invention discloses a floating type test platform of a natural gas liquefaction system. The test platform comprises a deep freeze compression module, a pre-cooling compression module, and an LNG vaporization compression module, the deep freeze compression module is connected with a pre-cooling heat exchange module and a deep freeze heat exchange module in sequence to form a circulation, the pre-cooling compression module is connected with the pre-cooling heat exchange module to form a circulation, the LNG vaporization compression module is connected with the pre-cooling heat exchange module and the deep freeze heat exchange module in sequence to form a circulation, and the pre-cooling heat exchange module and the deep freeze heat exchange module are arranged on a shake unit. The test platform can be used for testing the operation performance of core equipment such as a plate-fin heat exchanger, a coiled-pipe heat exchanger, a throttle valve, and a gas-liquid separator etc. in the natural gas liquefaction system in a marine environment, and the adaptability of the natural gas liquefaction system.

Description

technical field [0001] The invention relates to the technical field of test platforms, in particular to a test platform for a floating natural gas liquefaction system. Background technique [0002] There are abundant natural gas resources under the ocean. According to estimates by international oil and gas authorities, marine natural gas reserves account for about 50%-55% of the world's total natural gas reserves. In 2004, the world's marine natural gas production exceeded 1 trillion cubic meters, accounting for It is estimated that by 2015, the proportion of marine natural gas production in global natural gas production will increase to 34%, reaching 1.3 trillion cubic meters. With the increasing shortage of energy and the increasing demand, the development of marine natural gas resources is gradually becoming an important energy development strategy of various countries. The Ministry of Land and Resources of the People's Republic of China announced at the end of February ...

Claims

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Application Information

Patent Timeline
22 Feb 2017
Publication
CN106441964A
IPC
G01M99/00
CPC
G01M99/00; F25J1/0022; F25J1/0055; F25J1/0214; F25J1/0278; F25J1/0276
Inventors
陈杰; 单彤文