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Transient evaluation of a soil-borehole thermal energy storage system

机译:土壤钻孔热能储存系统的瞬态评价

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This study focuses on the simulation of transient ground temperatures in a field-scale soil-borehole thermal energy storage (SBTES) system in San Diego, California. The SBTES system consists of an array of thirteen 15 m-deep borehole heat exchangers installed in conglomerate bedrock at a spacing of approximately 1.5 m. Heat collected from solar thermal panels was injected into the SBTES system over a 4-month period, after which the subsurface was monitored during a 5-month ambient cooling period. The SBTES system is located in the vadose zone above the water table with relatively dry subsurface conditions, so a coupled heat transfer and water flow model was used to simulate the ground response using thermo-hydraulic constitutive relationships and parameters governing vapor diffusion and water phase change calibrated using soil collected from the site. The simulated ground temperatures from the model match well with measurements from thermistors installed at different radial locations and depths in the SBTES system and are greater than those simulated using a conduction-only model for saturated conditions. Significant overlap between the effects of the borehole heat exchangers was observed in terms of the ground temperature. Although the numerical simulations indicate that permanent decreases in degree of saturation and thermal conductivity occurred at the borehole heat exchanger locations, the zone of influence of these changes was relatively small for the particular site conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究重点研究了加利福尼亚州圣地亚哥的野外钻孔热能储存(SBTES)系统的瞬态地温度模拟。 SBTES系统由一系列十三个15个M深层钻孔热交换器组成,该阵列安装在砾岩基岩的间距约为1.5米。从太阳能电板收集的热量在4个月的时间内注入SBTES系统,之后在5个月的环境冷却期间监测地下。 SBTES系统位于水表上方的具有相对干燥的地下条件的水台上,因此使用热液压本构关系和控制蒸汽扩散和水相变化的参数来模拟地面响应的耦合传热和水流模型使用从现场收集的土壤校准。模型的模拟地温度匹配良好地与安装在不同径向位置的热敏电阻和SBTES系统的深度的测量,并且大于使用仅用于饱和条件的传导模型模拟的电机。在地温度下观察到钻孔热交换器的效果之间的显着重叠。尽管数值模拟表明在钻孔热交换器位置发生饱和度和导热率的永久性降低,但是这些变化的影响区域对于特定场地条件相对较小。 (c)2018年elestvier有限公司保留所有权利。

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