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Gas injection and brine discharge in rock salt gas storage studied via numerical simulation

机译:数值模拟研究岩盐储气库注气和排盐水

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摘要

Underground gas storage in rock salt is of great importance for peak-shaving and emergency gas supply. This paper addressed an actual rock salt underground gas storage facility in Jiangsu province, China, as the research project and carried out the following research centered on a detailed geological model, a salt cavern model and the process of gas injection and brine discharge. First, based on the theory of gas-liquid two-phase flow, the authors established a relationship between brine flow and natural gas bubbles under high pressure in the process of brine discharge. Second, the effect of pipe depth on the gas injection and brine discharge was simulated. The objective was mainly to choose the best combination of pipe depth and rate of brine discharge flow based on analysis of the relationship between the brine discharge pipe depth and the flow rate of the residual brine, and the optimal rate was given according to different distances. Third, the effect of residual brine on the gas injection and brine discharge was analyzed. The relationship curves between the maximum velocity on the surface of brine and the distance from the lower end of the brine discharge pipe to the bottom of the gas storage were obtained, and reasonable rates were suggested under different actual working conditions.
机译:岩盐中的地下气体存储对于调峰和紧急气体供应非常重要。本文以中国江苏省的实际岩盐地下储气库为研究项目,并围绕详细的地质模型,盐穴模型以及注气和排盐水过程进行了以下研究。首先,基于气液两相流理论,建立了盐水排放过程中高压下盐水流量与天然气气泡之间的关系。其次,模拟了管道深度对注气和盐水排放的影响。目的是通过分析盐水排放管深度与残留盐水流量之间的关系,选择最佳的管道深度和盐水排放流量的组合,并根据不同的距离给出最佳流量。第三,分析了残留盐水对注气和盐水排放的影响。得到盐水表面的最大速度与盐水排放管下端到储气库底部的距离之间的关系曲线,并建议在不同的实际工作条件下合理的速率。

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