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Experimental investigation of an innovative thermochemical process operating with a hydrate salt and moist air for thermal storage of solar energy: Global performance

机译:用水合盐和湿空气运行以进行太阳能热存储的创新热化学工艺的实验研究:全球性能

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This paper investigates an innovative open thermochemical system dedicated to high density and long term (seasonal) storage purposes. It involves a hydrate/water reactive pair and operates with moist air. This work focuses on the design of and experimentation with a large scale prototype using SrBr2/H2O as a reactive pair (400 kg of hydrated salt, 105 kW h of storage capacity and a reactor energy density of 203 kW h/m(3)). Promising conclusions have been obtained regarding the feasibility and performance of such a storage process. Hydration specific powers from 0.75 to 2 W/kg have been reached for a bed salt energy density of 388 kW h/m(3). Moreover, two important parameters that control the storage system have been identified and investigated: the equilibrium drop and the mass flow rate of moist air. Both have a strong influence on the reaction kinetics and therefore on the reactor's thermal power. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文研究了一种创新的开放式热化学系统,该系统专门用于高密度和长期(季节性)存储目的。它涉及水合物/水反应性对,并在潮湿的空气中运行。这项工作专注于使用SrBr2 / H2O作为反应对的大型原型的设计和试验(400千克水合盐,105 kWh的存储容量和反应堆能量密度为203 kWh / m(3)) 。关于这种存储过程的可行性和性能已经获得了有希望的结论。对于388 kW h / m的床盐能量密度,水化比功率达到0.75至2 W / kg(3)。此外,已经确定并研究了控制存储系统的两个重要参数:平衡降和湿空气的质量流量。两者都对反应动力学有很大影响,因此对反应器的热功率也有很大的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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