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Numerical Investigation on the Effect of Cementing Properties on the Thermal and Mechanical Stability of Geothermal Wells

机译:固井性能对地热井热力和机械稳定性影响的数值研究

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In this paper, a two-dimensional (2-D) Finite Element (FE) analysis of a geothermal well was performed with respect to five different cross-sections corresponding to the design specifications for the geothermal well that is currently constructed in Pohang, South Korea. Among the essential components (such as ground formation, casing, and cementing) of a geothermal well, the thermal and mechanical stability of the cementing component was discussed based on a series of parametric studies with consideration of the thermal conductivity and Young’s modulus of the cementing component. With increasing number of casing layers, the cementing component experiences less stress concentration. In addition, the lower thermal conductivity of the cementing material is advantageous for effectively controlling radial displacement. Consequently, it should be noted in geothermal well cementing construction that long-term strength degradation of the cementing might cause the severe structural instability of an entire geothermal well.
机译:本文对地热井的二维(2-D)有限元(FE)分析针对五个不同的横截面进行了分析,这些横截面对应于目前在南浦项市兴建的地热井的设计规范韩国。在地热井的基本组成部分(例如地层,套管和固井)中,考虑了固井的导热系数和杨氏模量,基于一系列参数研究,讨论了固井组分的热稳定性和机械稳定性。零件。随着套管层数的增加,固井组件承受的应力减小。另外,胶凝材料的较低的导热率有利于有效地控制径向位移。因此,在地热井固井施工中应注意,固井的长期强度降低可能会导致整个地热井的严重结构失稳。

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