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Finite Element Simulation of Compression of Elastomeric Seals in Open Hole Liners

机译:裸眼衬里弹性密封件压缩的有限元模拟

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Control of water flow in open hole wells is an urgent necessity to minimize water production and maximize oil output. Elastomers provide tight seals as they deform against formation during the expansion process of a solid expandable tubular. A better prediction of behavior of elastomers in compression will achieve an effective sealing mechanism. Due to the inherent nonlinearity of tubular expansion and elastomer compression against open hole formation, a closed form solution is extremely difficult to obtain. Finite element modeling provides a viable alternative, as an approximate simulation tool, to determine the seal pressure without significant compromise on the complexity of the problem. The finite element analysis software is employed to model the tubular expansion resulting in compression of elastomer seal to effectively isolate unwanted water producing zones. The formation is modeled as a rigid body or an elastic or elastic-plastic material. Two different boundary conditions, fixed-free and fixed-fixed, are employed depending on prevailing practices of oil operators in such applications. The effect of seal length and thickness, compression ratio and shear resistance at seal-formation interface are determined on the contact pressure between seal and formation.
机译:迫切需要控制裸眼井中的水流,以最大程度地减少水的产生并最大化油的产量。弹性体在固体可膨胀管的膨胀过程中变形而不会形成时,提供了紧密的密封。更好地预测弹性体在压缩状态下的行为将获得有效的密封机制。由于管状膨胀的固有非线性和针对裸露孔形成的弹性体压缩,因此很难获得封闭形式的解决方案。有限元建模提供了一种可行的替代方法,作为一种近似的仿真工具,可以确定密封压力,而不会显着影响问题的复杂性。使用有限元分析软件对管状膨胀建模,从而导致弹性体密封件压缩,从而有效隔离多余的产水区。将地层建模为刚体或弹性或弹塑性材料。根据石油运营商在此类应用中的普遍做法,采用了两种不同的边界条件,即自由固定和固定固定。密封长度与厚度,压缩比和抗剪强度在密封-地层界面的影响取决于密封与地层之间的接触压力。

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