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首页> 外文期刊>Journal of natural gas science and engineering >Predictions on temperatures of high-pressure gas/water/MEG mixtures flowing through wellhead chokes
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Predictions on temperatures of high-pressure gas/water/MEG mixtures flowing through wellhead chokes

机译:关于流过井口扼流圈的高压气/水/梅格/梅格混合物温度的预测

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摘要

The co-existence of gas, water, and monoethylene glycol (MEG) is common in produced fluids of high-pressure gas wells. Accurate predictions on the temperature changes during the choking process are essential for the design and operation of the choke valve. This paper presents an efficient multiphase isenthalpic flash method based on the cubic-plus-association equation of state (CPA EOS) to calculate the choke temperatures. In comparison with the traditional isenthalpic flash algorithm, this new method accounts for the self- and cross-association between polar water and MEG molecules, yielding more accurate enthalpy calculation results and multiphase component distributions for fluids containing water and MEG. The proposed model is validated by field test data with pressures from 8.68 MPa to 119.3 MPa. The average absolute deviations between the calculated choke temperatures and measured values are less than 1.6 degrees C even for vapor-liquid-aqueous threephase mixtures at various pressures. Moreover, case studies show that accounting for the association between polar water/MEG molecules contributes to accurate predictions on choke temperatures. At high pressures, the CPA EOS tends to give higher choke temperatures in comparison with those calculated based on the traditional SRK-Peneloux EOS. In contrast, the CPA EOS tends to yield lower temperatures at low pressures.
机译:气体,水和一甲基二醇(MEG)的共存在高压气井的生产流体中是常见的。对窒息过程中的温度变化的准确预测对于阻阀的设计和操作至关重要。本文介绍了基于立方 - 加 - 关联方程(CPA EOS)的高效多相型闪光法,以计算扼流圈温度。与传统的Isenthalpic Flash算法相比,这种新方法占极性水和MEG分子之间的自交互,产生了更准确的焓计算结果和含水和梅格的流体的多相组成分布。所提出的模型由现场测试数据验证,具有8.68 MPa至119.3 MPa的压力。即使在各种压力下的蒸气液 - 含水三相混合物,计算的扼流圈温度和测量值之间的平均绝对偏差也小于1.6℃。此外,案例研究表明,极地水/ MEG分子之间的关联核算有助于对扼流温度的准确预测。在高压下,CPA EOS倾向于与基于传统SRK-PENELOUX EOS计算的那些相比,促进扼流温度。相反,CPA EOS倾向于在低压力下产生较低的温度。

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