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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Advanced Exergy and Exergoeconomic Analysis of Cascade Absorption Refrigeration System Driven by Low-Grade Waste Heat
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Advanced Exergy and Exergoeconomic Analysis of Cascade Absorption Refrigeration System Driven by Low-Grade Waste Heat

机译:低级废热驱动的级联吸收制冷系统先进的Deergy和Exergo经济分析

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摘要

A cascade absorption refrigeration system, which utilizes low-grade waste heat, was investigated by an advanced exergy analysis and an exergoeconomic analysis that are compared with a conventional method. In the advanced analysis, the exergy destruction rate, exergy destruction cost rate, and investment cost rate of each component in the system are divided into endogenous/exogenous parts and avoidable/unavoidable parts. The results show that 24.44% of the exergy destruction rate, 23.80% of the exergy destruction cost rate, and 17.68% of the investment cost rate can be avoided by system optimization. The LiBr heat exchanger has the highest exergy destruction rate (437.447 kW) and highest exergy destruction cost rate (7.257 $/h), while the NH3 generator has the highest avoidable exergy destruction rate (95.309 kW) and highest investment cost rate (7.502 $/h). Most exergy destruction rates and corresponding exergy destruction cost rates are endogenous; thus, optimizing the components is necessary. In addition, the results of the exergoeconomic factor show that the investment cost rate of most components needs to be optimized. The sensitivity of parameters has a significant impact on the system. An advanced exergy analysis and an exergoeconomic analysis provide valuable information for optimizing the irreversibility and inefficiency of the system.
机译:通过先进的漏洞分析和与常规方法进行比较的高级废热的级联吸收制冷系统采用低级废热的制冷系统。在先进的分析中,系统中每个组分的漏洞破坏率,漏洞破坏成本率和投资成本率分为内源/外源部位和可避免/不可避免的部分。结果表明,系统优化,24.44%的漏洞破坏率,23.80%,占投资成本率的17.68%。 LIBR换热器具有最高的漏斗破坏率(437.447千瓦)和最高的遭受破坏成本率(7.257美元/小时),而NH3发电机具有最高可避免的漏洞破坏率(95.309千瓦)和最高投资成本率(7.502 $ /H)。最漏洞的破坏率和相应的遭受破坏成本率是内源性的;因此,优化组件是必要的。此外,exergo经济因素的结果表明,大多数组件的投资成本率需要优化。参数的敏感性对系统产生了重大影响。先进的Deergy分析和Exergo经济分析提供了优化系统不可逆性和效率的有价值的信息。

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