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首页> 外文期刊>Journal of natural gas science and engineering >Erosion simulation and improvement scheme of separator blowdown system -A case study of Changning national shale gas demonstration area
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Erosion simulation and improvement scheme of separator blowdown system -A case study of Changning national shale gas demonstration area

机译:分离器排污系统的腐蚀仿真与改进方案 - 改革国页岩气示范区的案例研究

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摘要

In the shale gas vertical separation metering skid, after the shale gas is separated by the gas-liquid separator, the bottom sand-carrying sewage is driven by high pressure, and the high-speed flowing sand particles will cause serious erosion to the sewage valve. Given this problem, taking a production well in the Changning area as an example, the corresponding mathematical model, and a three-dimensional model of blowdown valve is established. Based on FLUENT flow field analysis software, the erosion of the blowdown valve is simulated and analyzed under different pressure, sand particle size, and shape factor, sand particle density, and sewage sediment concentration, and the serious erosion problem of the blowdown system is obtained. Therefore, a new blowdown system improvement scheme is proposed, and the erosion of the blowdown valve after the scheme operation is simulated. The results show that the maximum erosion rate of the improved blowdown valve is 1.024 x 10(-6)kg/(s.m(2)), and the converted annual erosion thickness is 57.4 mu m, which is 26.538-61.247 mm compared to the unimproved sewage valve. The corrosion inhibition rate of the sewage system can reach more than 99%. This greatly reduces the erosion rate of the blowdown valve and ensures the safe operation of the equipment.
机译:在页岩气垂直分离计量橇中,页岩气经气液分离器分离后,底部携砂污水由高压驱动,高速流动的砂粒会对污水阀造成严重侵蚀。针对这一问题,以长宁地区的一口生产井为例,建立了相应的数学模型,并建立了排污阀的三维模型。基于FLUENT流场分析软件,对排污阀在不同压力、砂粒大小、形状因子、砂粒密度和污水含沙量下的冲蚀进行了模拟分析,得出了排污系统严重的冲蚀问题。为此,提出了新的排污系统改进方案,并对方案运行后排污阀的腐蚀进行了模拟。结果表明,改进排污阀的最大冲蚀率为1.024x10(-6)kg/(s.m(2)),折合年冲蚀厚度为57.4μm,与未改进排污阀相比,折合年冲蚀厚度为26.538-61.247mm。污水系统的缓蚀率可达99%以上。这大大降低了排污阀的腐蚀速率,确保了设备的安全运行。

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