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Discharging performance of a forced-circulation ice thermal storage system for a permanent refuge chamber in an underground mine

机译:地下矿井永久避难室的强制循环冰热存储系统的排出性能

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摘要

This study aimed to develop a proper control strategy for a forced-circulation ice thermal storage system (ITSS) designed for a permanent refuge chamber with an accommodation capacity of 50 persons. The heat transfer characteristics of the ITSS were investigated through theoretical and experimental approaches. A quasi-steady one-dimensional mathematical model for predicting the transient discharging power was proposed. On this basis, a control strategy was proposed to fulfill the minimum cooling requirement in consideration of both effective discharging time and human comfort. The minimum required velocity of the ITSS was analyzed; from this, the effective working time of the ITSS was determined to be 64.57 h. Additionally, the heat load inside the chamber was found to be the main factor that affected the effective temperature control duration and the utilization ratio of the ice. Thus, a reserve factor, which is defined as a function of rated heat load and determined by the discharging performance model, is suggested for consideration during optimization. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究旨在为永久避难室设计的强制循环冰热储存系统(ITS)制定适当的控制策略,该避难室具有50人的容纳能力。通过理论和实验方法研究了ITS的热传递特性。提出了一种用于预测瞬态放电功率的准稳态一维数学模型。在此基础上,提出了一种控制策略,以考虑有效的排放时间和人类舒适性来满足最低的冷却要求。分析了其最低要求的速度;由此,其有效工作时间被确定为64.57小时。另外,发现腔室内的热负荷是影响有效温度控制持续时间和冰的利用率的主要因素。因此,建议在优化期间考虑作为额定热负荷的函数并由放电性能模型确定的储备因子。 (c)2016 Elsevier Ltd.保留所有权利。

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