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Analysis of recovery efficiency in high-temperature aquifer thermal energy storage: a Rayleigh-based method

机译:基于瑞利方法的高温含水层热能存储的回收效率分析

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High-temperature aquifer thermal energy storage (HT-ATES) is an important technique for energy conservation. A controlling factor for the economic feasibility of HT-ATES is the recovery efficiency. Due to the effects of density-driven flow (free convection), HTATES systems applied in permeable aquifers typically have lower recovery efficiencies than conventional (lowtemperature) ATES systems. For a reliable estimation of the recovery efficiency it is, therefore, important to take the effect of density-driven flow into account. A numerical evaluation of the prime factors influencing the recovery efficiency of HT-ATES systems is presented. Sensitivity runs evaluating the effects of aquifer properties, as well as operational variables, were performed to deduce the most important factors that control the recovery efficiency. A correlation was found between the dimensionless Rayleigh number (a measure of the relative strength of free convection) and the calculated recovery efficiencies. Based on a modified Rayleigh number, two simple analytical solutions are proposed to calculate the recovery efficiency, each one covering a different range of aquifer thicknesses. The analytical solutions accurately reproduce all numerically modeled scenarios with an average error of less than 3%. The proposed method can be of practical use when considering or designing an HT-ATES system.
机译:高温含水层热能存储(HT-ATES)是节约能源的重要技术。 HT-ATES经济可行性的控制因素是回收效率。由于密度驱动的流动(自由对流)的影响,应用于渗透性含水层中的HTATES系统通常比传统的(低温)ATES系统具有较低的回收效率。因此,为了可靠地估算回收效率,重要的是要考虑密度驱动流的影响。对影响HT-ATES系统回收效率的主要因素进行了数值评估。进行敏感性评估,评估含水层性质的影响以及操作变量,以推断出控制采收率的最重要因素。在无因次瑞利数(自由对流的相对强度的度量)与计算的采收率之间发现了相关性。基于修改后的瑞利数,提出了两种简单的分析解决方案来计算采收率,每种解决方案涵盖了不同范围的含水层厚度。分析解决方案可以准确地再现所有数值建模的方案,平均误差小于3%。在考虑或设计HT-ATES系统时,所提出的方法可能具有实际用途。

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