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Thermodynamic analysis of waste heat power generation system

机译:余热发电系统的热力学分析

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In the present work, a waste heat power generation system is analyzed based on the criteria with and without considering the heat/exergy loss to the environment. For the criteria without considering the heat/exergy loss to the environment, the first- and second-law efficiencies display different tendencies with the variations of some system parameters. When the heat/exergy loss to the environment is taken into consideration, the first and second law efficiencies display the same tendency. Thus, choosing the appropriate expressions for the performance criteria is crucial for the optimization design of the waste heat power generation system. It is found that there are two approaches to improving the system performance: one is to improve the heat/exergy input; the other is to enhance the heat-work conversion ability of the system. The former would deteriorate the environment if the heat-work conversion ability of the system remains unchanged; the latter could reduce the environmental impact but it's restricted by the heat/exergy input. Therefore, the optimal operation condition should be achieved at the trade-off between the heat/exergy input and the heat-work conversion ability of the system.
机译:在当前的工作中,基于有条件的废热发电系统进行了分析,而没有考虑到对环境的热能/热能损失。对于不考虑热量/环境热量损失的标准,第一定律和第二定律效率随某些系统参数的变化而显示出不同的趋势。当考虑到对环境的热能/热能损失时,第一定律效率和第二定律效率表现出相同的趋势。因此,为性能标准选择合适的表达式对于废热发电系统的优化设计至关重要。发现有两种改善系统性能的方法:一种是改善热/火力输入。二是增强系统的热功转化能力。如果系统的热功转换能力保持不变,前者将使环境恶化。后者可以减少对环境的影响,但受到热量/火用输入的限制。因此,应该在系统的热能输入与热功转换能力之间进行权衡,以达到最佳运行条件。

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