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Effect of separation distance on the mechanical stability and thermal performance of twin hot-water storage caverns

机译:分隔距离对双储水洞穴机械稳定性和热性能的影响

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Large hot-water storage systems can be used for seasonal storage of solar thermal heat as part of district heating systems. Underground thermal energy storage (TES) using rock caverns is an alternative method for large-scale, long-term TES utilization because it is an economical large-scale storage method. Cavern stability is a crucial consideration in the design of TES caverns. Stability issues limit cavern size and spacing because the safe dimensions of underground caverns largely depend on geotechnical conditions. If the maximum available size of a single cavern does not meet the volume requirements for TES, the use of multiple caverns should be considered. When using multiple TES caverns, the separation distance between the caverns is a decisive factor in the design of storage spaces because multiple caverns may interact mechanically and thermally if they are closely spaced. In this paper, a numerical investigation is conducted to understand how the distance between TES caverns affects their mechanical stability and thermal performance. The investigation is based on twin caverns used to store hot water for district heating in residential areas. The mechanical stability of the caverns is assessed in terms of the probability of cavern failure; cavern thermal performance is assessed in terms of the thermal stratification within the caverns and the heat loss to the surroundings. The heating characteristics of the rock around the caverns are also investigated with respect to operating time. The effect of the separation distance on mechanical stability and thermal performance is presented and discussed in detail, and we suggest design considerations and a performance evaluation process for the use of multiple TES caverns. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大型热水存储系统可作为区域供热系统的一部分,用于太阳能热能的季节性存储。使用岩洞的地下热能存储(TES)是大规模长期TES利用的一种替代方法,因为它是一种经济的大规模存储方法。洞穴稳定性是TES洞穴设计中的关键考虑因素。稳定性问题限制了洞穴的大小和间距,因为地下洞穴的安全尺寸在很大程度上取决于岩土条件。如果单个洞穴的最大可用尺寸不符合TES的体积要求,则应考虑使用多个洞穴。当使用多个TES洞穴时,洞穴之间的间隔距离是存储空间设计的决定性因素,因为如果多个洞穴间隔很近,它们可能会发生机械和热相互作用。在本文中,进行了一项数值研究,以了解TES洞之间的距离如何影响其机械稳定性和热性能。这项调查是基于用于在居民区为区域供热而储存热水的两个洞穴进行的。洞穴的机械稳定性是根据洞穴破坏的可能性来评估的。根据洞穴内部的热分层和对周围环境的热量损失来评估洞穴的热性能。还研究了洞穴周围岩石的加热特性与工作时间的关系。详细介绍和讨论了分隔距离对机械稳定性和热性能的影响,我们建议使用多个TES洞穴的设计考虑因素和性能评估过程。 (C)2015 Elsevier Ltd.保留所有权利。

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