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Prediction of Subsidence Over Oil and Gas Fields with Use of Influence Functions (Case Study: South Pars Gas Field, Iran)

机译:利用影响函数预测油气田的沉降(案例研究:伊朗南帕尔斯气田)

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摘要

Withdrawal of oil and gas from reservoirs causes a decrease in pore pressure and an increase in the effective stress which leads to reservoir compaction. Reservoir compaction can be result in surface subsidence through the elastic response of the subsurface layers. To determine the subsidence above a hydrocarbon field, the reservoir compaction must first be calculated, and then, the effect of the reservoir compaction on the surface is modeled. The use of the uniaxial compaction theory is a more customary and accepted method for determining the amount of reservoir compaction induced by pressure depletion. Surface deformation above compacting reservoirs can be efficiently modeled using influence functions. In this paper, Knothe and Geertsma influence functions were used in a simple approach for subsidence modeling of the South Pars gas field. In this approach, we used circular network, called influence network, for determining the whole reservoir compaction effect on the field surface. In addition, the subsidence of the South Pars gas field is modeled using the AEsubs software, and the results are compared to the predicted subsidence by the influence functions.
机译:从储层中抽出油气会导致孔隙压力下降和有效应力增加,从而导致储层压实。储层的压实可以通过地下层的弹性响应导致地表沉陷。为了确定在油气田之上的沉降,必须首先计算储层的压实度,然后对储层压实对地表的影响进行建模。单轴压实理论的使用是一种更常规和可接受的方法,用于确定由压力消耗引起的储层压实量。使用影响函数可以有效地模拟压实储层上方的表面变形。在本文中,将Knothe和Geertsma影响函数用于一种简单的方法来对South Pars气田进行沉降模拟。在这种方法中,我们使用了称为影响网络的圆形网络来确定整个油藏在地面上的压实效果。此外,使用AEsubs软件对South Pars气田的沉降进行了建模,并通过影响函数将结果与预测的沉降进行了比较。

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