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Sorption based long-term thermal energy storage - Process classification and analysis of performance limitations: A review

机译:基于吸附的长期热能存储-过程分类和性能局限性分析:综述

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摘要

In sorption heat storage, one of the sources of discrepancy between theoretical material based energy storage potential and resulting system performance is the choice of process type. In this paper, in order to understand this performance deviation, a sorption heat storage process categorisation is proposed. This is followed by a review of reported sorption systems categorised according to the proposed process classification. An analysis of the reported systems is then undertaken, focusing on the ratio of resulting temperature gain in sorption (ad- or absorption), compared to required temperature lift in desorption. This measure is termed temperature effectiveness and enables a form of system performance evaluation in the broad landscape of sorption thermal energy storage demonstrators. It is argued that other performance parameters such as volumetric energy storage density and volumetric charge and discharge power density are not adequate for comparison due to the highly varying testing conditions applied. From the system evaluation, it is seen that best temperature effectiveness is generally found in a closed, transported process with the ability of single sorbent pass and true counter flow heat exchange.
机译:在吸附式储热中,基于理论材料的储能潜力与所得系统性能之间差异的来源之一是工艺类型的选择。在本文中,为了理解该性能偏差,提出了一种吸附热存储过程的分类。接下来是对根据建议的过程分类进行分类的报告吸附系统的综述。然后,对报告的系统进行分析,重点是与解吸所需的温度提升相比,吸附产生的温度增益(吸附或吸收)之比。这项措施被称为温度有效性,可以在广泛的吸附式热能存储演示器领域中进行系统性能评估。有人认为,由于所使用的测试条件变化很大,其他性能参数(如体积能量存储密度和体积充放电功率密度)不足以进行比较。从系统评估中可以看出,通常在封闭,运输的过程中具有最佳的温度效率,并且具有单次吸附剂通过和真正的逆流热交换的能力。

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