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Predicting Temperature and Pressure in High-Temperature-High-Pressure Gas Wells

机译:高温高压气井的温度和压力预测

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摘要

In this article, we give a coupled system model of differential equations concerning pressure and temperature in high-temperature-high-pressure wells according to mass, momentum, and energy balances. We present an algorithm solution model, along with the fourth-order Runge-Kutta method. The basic data for the X Well (a high-temperature-high-pressure gas well, 6,115 m deep) in China were used for case history calculations and a sensitivity analysis was made for the model. In curve graphs, gas pressure and temperature along the depth of the well were plotted with different gradients, intuitively reflecting the gas flow law and characteristics of heat transfer information. The results can provide technical reliability in the processing of well test design in high-temperature-high-pressure gas wells and the dynamic analysis of production.
机译:在本文中,我们根据质量,动量和能量平衡,给出了涉及高温高压井中压力和温度的微分方程的耦合系统模型。我们提出了一种算法解决方案模型,以及四阶Runge-Kutta方法。使用中国X井(高温高压气井,深6,115 m)的基本数据进行病历计算,并对模型进行敏感性分析。在曲线图中,沿井深的气体压力和温度以不同的梯度绘制,直观地反映了气体流动规律和传热信息的特征。该结果可为高温高压气井试井设计的处理和生产动态分析提供技术可靠性。

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