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Design, Optimization and Economic Feasibility of Absorption Refrigeration System Using (Lithium Bromide + Water) as Working Pair

机译:以(溴化锂+水)为工作对的吸收式制冷系统的设计,优化和经济可行性

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摘要

The global warming and energy crisis have become two most important environmental problems of this twenty-first century. To overcome these problems, scientists have worked on inventing different devices to lessen this impact. Vapour absorption refrigeration cycles are the products of this ideology. Absorption refrigeration cycle generally works on the solar energy, but it can also very well work on waste heat sources i.e. heat generated from data centres, different industries and from large hotels. If this waste heat is being used then not only energy crisis will decrease but also environment pollution will reduce to a greater extent. Though industrial point of view, absorption refrigeration cycle is an old concept, but from academic point, there is still needed a lot of works to be carried out to visualise different aspects like its performance, heat and mass coefficients and fluxes. This project work is based on the simulation, optimum designing as well as finding out the economic feasibility. LiBr + water is taken as the working pair to do the simulation, analysis and design of an absorption refrigeration cycle. At the end of this project work, economic feasibility has also been found out. When compared with a vapour compression refrigeration cycle, it can be visualized that the vapour absorption refrigeration system has an annual profit of around Rs. 7500/- which shows the economical viability of this refrigeration system.
机译:全球变暖和能源危机已成为二十一世纪最重要的两个环境问题。为了克服这些问题,科学家们致力于发明不同的设备以减轻这种影响。蒸气吸收式制冷循环是这种意识形态的产物。吸收式制冷循环通常使用太阳能,但也可以很好地利用废热源,即数据中心,不同行业和大型酒店产生的热量。如果使用这种废热,那么不仅能源危机将减少,而且环境污染也将大大减少。尽管从工业角度来看,吸收式制冷循环是一个古老的概念,但是从学术角度来看,仍需要进行大量工作来可视化其性能,热和质量系数以及通量等各个方面。该项目工作基于仿真,优化设计以及找出经济可行性。以溴化锂+水为工作对,进行吸收式制冷循环的仿真,分析和设计。在该项目工作的最后,还发现了经济可行性。与蒸气压缩式制冷循环相比,可以看到,蒸气吸收式制冷系统的年利润约为Rs。 7500 /-显示了该制冷系统的经济可行性。

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    Mohanty Soumya Ranjan;

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  • 年度 2015
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