Thermoeconomic design and analysis of a sensible-heat thermal energy storage system with Joulean heating of the storage element

Syed M. Zubair , Meamer El-Nakla , Shahzada Z. Shuja
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引用次数: 6

Abstract

A second-law-based thermoeconomic model of a sensible heat-storage system with Joulean heating is derived and discussed in which the storage element is cooled by flowing stream of gases. In this analysis, unit cost values are attached to the irreversible losses caused by the finite-temperature difference heat transfer and pressure drop during the heat removal process. Important dimensionless parameters are identified and the results are presented in terms of the optimum number of heat transfer units (NTUopt) as a function of the dimensionless unit cost per unit heat conductance (γUA) and dimensionless temperature difference (τ) of the storage systems. The storage systems studied are optimized by introducing a new performance criterion described as the cost rate number ). Performance results of low- and high-temperature storage systems are also examined and the results are compared with that obtained from Krane's analysis to illustrate the usefulness of the present approach. The influence of important unit cost parameters on NTUopt and Γopt are also studied in somewhat more detail.

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蓄热元件采用焦耳加热的显热蓄热系统的热经济性设计与分析
推导并讨论了焦耳加热的显热蓄热系统的第二定律热经济模型,其中储热元件被流动的气体流冷却。在本分析中,单位成本值附加在除热过程中有限温差换热和压降所造成的不可逆损失上。确定了重要的无量纲参数,并将最佳换热单元数(NTUopt)作为储能系统的无量纲单位成本(γUA)和无量纲温差(τ)的函数给出结果。通过引入成本率数(Γ∗)来优化所研究的存储系统。本文还研究了低温和高温存储系统的性能结果,并将结果与Krane的分析结果进行了比较,以说明本方法的有效性。重要的单位成本参数对NTUopt和Γopt *的影响也进行了较为详细的研究。
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