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Optimization of method for gas-dynamic research of wells

机译:井气动力学研究方法优化

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The rational system of development gas fields and the operation of underground gas storage facilities are directly dependent on the amount of information received from each well, i. e. the degree of study productive formation. The most important sources of information about the gas layer and the wells of gas field are the gas-dynamic methods research of wells. The research results are processed by binary equation of gas flow to the well bottom. The coefficients of filtration resistance determined in the research process are used in the future to calculate the technological operating conditions of well and gas-dynamic calculations of options for development gas deposits or cyclic operation in UGS. Studies are conducted at four or six steady state modes. However, carrying out such complex of studies for operating gas fields and UGS with the number of wells 100-300 or more due to certain difficulties. First, they require a high cost of working time and a partial declin e in productivity of deposit or UGS; and secondly, the reliability of determination research parameters is often low due to incomplete stabilization of well operation mode. The article proposes an accelerated method of research for gas wells in steady-state regimes using the power formula of gas flow to the well bottom. The application of this method to gas deposits and underground gas storage facilities of Precarpathian has made it possible to significantly accelerate the research process in wells without substantial reducing the reliability of their results.
机译:地下储气设施的理性系统和地下储气设施的运行直接依赖于从每个孔收到的信息量。 e。研究的高效性形成。关于气体层和气田井的最重要信息来源是井的气体动力学方法。通过对井底的气体流量的二进制方程来处理研究结果。将来使用在研究过程中确定的过滤电阻系数,以计算UGS中的开发气体沉积物或循环操作的井和气体动力学计算的技术操作条件。研究以四个或六个稳态模式进行。然而,由于某些困难,对运行气田和UG的数量进行操作,对运行的气田和UG进行井的数量。首先,它们需要高成本的工作时间和部分抑制率的矿床或UG的生产率;其次,由于井操作模式不完全稳定,确定研究参数的可靠性通常很低。本文用气体流量的稳态制度在井底的稳定性方案中提出了一种加速研究气体井。这种方法在PrecarPathian的气储存和地下储气设施中的应用使得能够显着加速井中的研究过程,而无需重大降低其结果的可靠性。

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