High-temperature high-pressure gas-liquid two-phase corrosion simulated experiment device and experimental method thereof

A technology that simulates experimental devices and high temperature and high pressure. It is used in weather resistance/light resistance/corrosion resistance, measuring devices, instruments, etc. It can solve the problems of simultaneous and online measurement, and achieve the effect of convenient use and simple connection method.

Active Publication Date: 2011-04-06
CHINA PETROLEUM & CHEM CORP +1
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Problems solved by technology

[0007] Aiming at the above-mentioned technical problems existing in the prior art, the present invention provides a high-temperature and high-pressure gas-liquid two-phase corrosion simulation experiment device, in which the corrosion simulation research of liquid phase and gas phase condensate environment is carried out simultaneously in a set of devices, which can be used to simulate Corrosion behavior of any pipes and equipment with liquid phase corrosion

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  • High-temperature high-pressure gas-liquid two-phase corrosion simulated experiment device and experimental method thereof
  • High-temperature high-pressure gas-liquid two-phase corrosion simulated experiment device and experimental method thereof
  • High-temperature high-pressure gas-liquid two-phase corrosion simulated experiment device and experimental method thereof

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[0031] The invention provides a high-temperature and high-pressure gas-liquid two-phase corrosion simulation experiment device, which includes a heat preservation and heating device, a high-temperature and high-pressure reactor, a first temperature measuring resistor in the high-temperature and high-pressure reactor, a top cover of the high-temperature and high-pressure reactor, and an air inlet pipe. The simulation experiment device also includes a condensation system, a liquid phase corrosion test system and a gas phase condensate corrosion test system.

[0032] The condensing system includes a condenser located in a high temperature and high pressure reactor, a second temperature measuring resistor and a cooling water coil in the condenser.

[0033] The liquid phase corrosion test system includes a magnetic drive device, rotating shaft, cylindrical electrode, auxiliary electrode and reference electrode. The rotating shaft includes a metal rod, a polytetrafluoroethylene sleeve an...

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Abstract

The invention relates to a high-temperature high-pressure gas-liquid two-phase corrosion simulated experiment device and an experimental method thereof. The simulated experiment device comprises a heat preservation heating device (1), a high-temperature high-pressure reactor (2), a first temperature measuring resistance (4) in the high-temperature high-pressure reactor (2), an upper cover (3) of the high-temperature high-pressure reactor and an air inlet pipe (5), and is characterized also by comprising a condensing system, a liquid-phase corrosion testing system and a gas-phase condensed liquid corrosion testing system. Corrosion simulation study on the liquid-phase and gas-phase condensed liquid environments is carried out in the same device, thus solving the problem that the pipelines and equipment in industries are corroded by liquid-phase and gas-phase condensed liquids, but can not be measured on line at the same time, and having important significance on the corrosion behaviors of liquid-phase corrosion and gas-phase corrosion of the pipelines or the equipment, discipline, mechanization, and evaluation and research of corrosion inhibition efficiency of a gas (liquid) corrosion inhibitor.

Description

technical field [0001] The invention relates to a high-temperature and high-pressure gas-liquid two-phase corrosion simulation experiment device, in particular to a simulation experiment capable of simultaneously performing high-temperature and high-pressure liquid-phase corrosion and gas-phase condensate corrosion simulation experiments in an environment where liquid phase and gas-phase condensate coexist. device. [0002] For example, the liquid phase corrosion at the bottom of crude oil storage tanks and the gas phase condensate corrosion at the tank top, the liquid phase corrosion at the bottom of wet natural gas pipelines and the gas phase condensate corrosion at the top, etc., can also be used for gas phase (liquid phase) corrosion inhibitors on the top (bottom) of equipment ) corrosion inhibition efficiency evaluation. Background technique [0003] It is a common phenomenon in the industry that pipelines and equipment are in a gas-liquid coexistence environment. Ther...

Claims

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Application Information

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IPC IPC(8): G01N17/02
Inventor 蒋秀屈定荣刘小辉
Owner CHINA PETROLEUM & CHEM CORP
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