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Investigation of a three-phase thermochemical reactor through an experimentally validated numerical modelling

机译:通过实验验证的数值模拟研究三相热化学反应器

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摘要

For some renewable energy such as solar energy, the mismatch between the side of generation and demand should be tackled by thermal energy storage techniques with high energy density and low thermal losses. Thermochemical energy storage is a promising technology to meet these requirements. Within a thermochemical energy storage system, reactor is one of the critical components to achieve the optimal performance. While few studies have investigated the three-phase reactor applied in open thermochemical system in building's application. This study presents a numerical description of a three-phase thermochemical reactor with air, solid thermochemical material and water flow. Zeolite 13X has been selected as the working thermochemical material and experimental tests have been conducted to obtain the temperature profiles in both the charging and discharging processes. A two dimensional numerical model of the reactors has been developed, verified and validated. A good agreement has been obtained by comparing the numerical and experimental results with the root mean square percent error ranging from 6.02% to 12.29%. Additionally, parameters sensitivity analysis has been conducted for reference diffusivity, heterogeneity factor, and initial water uptake of the zeolite. The numerical model and the investigation provide the tool for reactor design optimisation, charging and discharging processes evaluation and reactor performance improvement.
机译:对于一些可再生能源,如太阳能,通过具有高能量密度和低热损失的热能存储技术,应解决一代和需求之间的不匹配。热化学储能是一个有前途的技术,以满足这些要求。在热化学储能系统中,反应器是实现最佳性能的关键组件之一。虽然很少有研究在建筑物应用中调查了在开放的热化学系统中应用的三相反应器。该研究呈现了具有空气,固体热化学材料和水流的三相热化学反应器的数值描述。已经选择了沸石13x作为工作热化学材料和实验测试,以获得充电和放电过程中的温度曲线。已经开发,验证和验证了反应器的二维数值模型。通过将数值和实验结果与从6.02%的误差的均值率比较,通过比较均值的数值和实验结果,从6.02%到12.29%。另外,已经进行了参数敏感性分析,用于参考扩散性,异质性因子和沸石的初始吸水。数值模型和调查为电抗器设计优化,充电和放电过程评估和反应堆性能改进提供了工具。

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