Optimal design of medium-buried pipe with horizontal wells

Zhiwei Wang
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Abstract

In this paper, based on the emergence of medium-depth cased buried pipe with horizontal wells, a kind of optimization design for this buried pipe is designed. Firstly, a semi-analytical model and related evaluation indexes are established for the model, and three different schemes are used for simulation and comparison, which are: changing the inner and outer diameters of the buried pipe at the same time, changing the outer pipe diameter while keeping the inner pipe diameter unchanged, and changing the inner pipe diameter while keeping the outer pipe diameter unchanged, which are of great significance for the optimization of the design of the new type of buried pipe. In this paper, the establishment of the model mainly adopts the establishment and discretization of the energy equation of heat transfer and uses Fortran software to realize. Ultimately this paper comprehensively consider its temperature distribution, heat storage capacity and its economic type, can be concluded that the above three options in option two of the investment is relatively small, the temperature enhancement is more significant. The results and conclusions of the optimization are very helpful for the optimal design of this kind of buried pipe.
带水平井的中埋管优化设计
本文基于水平井中深套管埋管的出现,设计了一种针对该埋管的优化设计方案。首先,针对该模型建立了半解析模型及相关评价指标,并采用三种不同的方案进行模拟对比,分别为:同时改变埋管内外径、改变外管直径而保持内管直径不变、改变内管直径而保持外管直径不变,这三种方案对于新型埋管的优化设计具有重要意义。本文模型的建立主要采用传热能量方程的建立和离散化,并利用 Fortran 软件实现。最终本文综合考虑其温度分布、蓄热能力及其经济类型,可以得出以上三种方案中方案二的投资相对较小,温度提升较为显著。优化的结果和结论对于这种地埋管的优化设计是非常有帮助的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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