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Thermodynamic, environmental and economic analysis of absorption air conditioning unit for emissions reduction onboard passenger ships

机译:用于减少客船排放的吸收式空调装置的热力学,环境和经济分析

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In this paper, the waste heat of exhaust gases and jacket cooling water in marine diesel engines are analyzed to operate the absorption refrigeration unit (ARU). Thermo-economic and environmental analysis of the absorption refrigeration cycle operated with the two heat sources that use lithium bromide as an absorbent is carried out. The analysis is performed using Engineering Equation Solver (EES) software package where the thermodynamic properties of the steam and the LiBr-water mixtures are provided. The used EES code is verified by published experimental data. As a case study, high speed passenger vessel operating in the Red Sea area has been investigated. The results show that a considerable specific economic benefit could be achieved from ARU jacket cooling water operated over that gained from main engine exhaust gases. Environmentally, applying ARU machine during cruise will reduce the annual fuel consumption for the diesel generators by 156 ton with a reduction percentage of 23%. This will reduce the exhaust gas emissions by 6.3% from the applied main engine emissions. In addition, this will result in reducing NOx, SOx, and CO2emissions with cost-effectiveness of 4.99 $/kg, 13.18 $/kg, and 0.08 $/kg, respectively.
机译:本文分析了船用柴油机中废气和夹套冷却水的废热,以运行吸收式制冷机组(ARU)。对使用溴化锂作为吸收剂的两种热源运行的吸收式制冷循环进行了热经济和环境分析。使用Engineering Equation Solver(EES)软件包进行分析,其中提供了蒸汽和LiBr-水混合物的热力学性质。使用的EES代码已通过公开的实验数据验证。作为案例研究,对在红海地区作业的高速客船进行了调查。结果表明,运行ARU夹套冷却水要比从主机排气中获得的冷却水可实现可观的特定经济效益。在环境方面,在巡航期间使用ARU机器将使柴油发电机的年度燃料消耗减少156吨,减少百分比为23%。这将使废气排放量比应用的主机排放量减少6.3%。此外,这将减少NOx,SOx和CO2排放,成本效益分别为4.99 $ / kg,13.18 $ / kg和0.08 $ / kg。

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