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Cement Seal Failure at Casing Shoe in Shallow Marine Sediments

机译:浅海沉积物中套管鞋的水泥密封失效

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This paper describes the hypothetical mechanisms of cement seal failure during casing shoe leak-off testing (LOT) of surface holes in the shallow-marine sediments (SMSs)-parting of cement sheath from formation by LOT wellbore pressure. Presented is a theoretical proof-supported by LOT field data-explaining why, in SMSs, casing shoe failure occurs at pressures smaller than the rock fracturing pressures. Hence, for upper well sections in SMSs the prediction of casing shoe strength should be based on critical conditions for cement seal failure rather than rock fracturing. It is also shown that pressure required for cement seal failure can be determined from contact stress between cement and wellbore. Contact stress develops during the process of cement setting as a result of volumetric changes in the annulus. Proposed is a mathematical model of contact stress based on cement volume reduction compensated by compressibility of the casing string, cement, and wellbore. An example demonstrates potential application of the model. The study identifies two factors resulting from drilling process, which may control the critical pressure of cement seal failure in SMSs: contact stress at casing shoe, from cementing operations, and liquid penetration, an invasion of drilling fluid into the cement-rock interface around the casing shoe. It is shown that changes in cementing and drilling practices may increase casing shoe integrity and reduce the need for cement squeeze treatments.
机译:本文描述了在浅海沉积物(SMSs)中的表层孔的套管靴泄漏测试(LOT)过程中水泥密封失效的假想机理,这是通过LOT井眼压力从地层剥离水泥护套的结果。提出的是一个由LOT现场数据支持的理论证明,解释了为什么在SMS中套管鞋的破坏是在小于岩石压裂压力的压力下发生的。因此,对于SMS的上部井段,套管靴强度的预测应基于水泥密封失效的关键条件,而不是岩石破裂。还显示出水泥密封失效所需的压力可以由水泥与井眼之间的接触应力确定。由于环空体积的变化,在水泥凝固过程中会产生接触应力。提出了一种基于水泥体积减少的接触应力数学模型,并通过套管柱,水泥和井眼的可压缩性进行了补偿。一个例子演示了该模型的潜在应用。这项研究确定了钻井过程中产生的两个因素,这些因素可能会控制SMS中水泥密封失效的临界压力:套管靴的固结操作中的接触应力,固结操作和液体渗透,钻井液侵入钻头周围的水泥-岩石界面中。套管鞋。结果表明,固井和钻井方法的变化可以提高套管鞋的完整性,并减少对水泥挤压处理的需求。

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