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Ecological performance of four-temperature-level absorption heat transformer with heat resistance, heat leakage and internal irreversibility

机译:具有耐热性,散热性和内部不可逆性的四温级吸收式热转换器的生态性能

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摘要

Based on irreversible four-temperature-level (FTL) cycle model of absorption heat transformer (AHT) plants with heat resistance, heat leakage and internal irreversibility, an exergy-based ecological criterion function of is proposed, which can attain a compromise in inter restricted relations between exergy output and exergy loss of AHT plants. When all losses are considered and different losses are ignored, detailed expressions and simplified expressions among ecological function, exergy output, exergy loss, and various loss factors are derived. Using illustrative calculations, the effects of various loss factors on the general characteristics and the optimal ecological characteristics are analyzed. The expressions and conclusions obtained herein are general, which can provide some new guidelines about parameter selection for practical AHT plants.
机译:基于具有热阻,热泄漏和内部不可逆性的吸收式热力变压器(AHT)装置的不可逆四温度级(FTL)循环模型,提出了基于火用的生态准则函数,该函数可以在相互限制中取得折中。火力发电厂的火用输出和火用损失之间的关系。当考虑所有损失而忽略不同损失时,得出生态功能,火用输出,火用损失和各种损失因素之间的详细表述和简化表述。使用说明性计算,分析了各种损失因子对总体特征和最佳生态特征的影响。本文获得的表达和结论是一般性的,可以为实用AHT植物的参数选择提供一些新的指导。

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