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首页> 外文期刊>International Journal of Refrigeration >Thermodynamic studies on a solar assisted transcritical CO2 based tri-generation system with an ejector for dairy applications
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Thermodynamic studies on a solar assisted transcritical CO2 based tri-generation system with an ejector for dairy applications

机译:具有乳品应用喷射器的太阳能辅助跨临界二氧化碳二氧化碳的热力学研究

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摘要

A simple thermodynamic analysis is carried out on a novel solar energy based trigeneration system suitable for dairy applications. CO2 is considered as the working fluid for the entire system, in which an ejector replaces the throttle valve. The effect of important design and operating parameters on system performance is obtained. The performance is indicated in terms of overall COP, specific net power output and specific milk flow rate. The ranges of operating parameters are constrained to always produces a net positive power output. Results show that the milk heat exchanger influences the performance strongly. The specific net power output increases as the gas cooler pressure decreases and ambient temperature increases. However, the specific milk flow rate and overall COP are high at higher gas cooler pressure and lower ambient temperature. This shows the need for controlling the gas cooler pressure depending upon requirement of milk flow rate or power output. For the ranges of operating parameters considered, the overall COP of the trigeneration system is found to be around 0.8. Use of work recovery expander in place of ejector increases the overall COP by about 12%. However, when the ejector is replaced with a conventional throttle valve, then the net power output from the system becomes negative. It is expected that this preliminary study is useful in assessing the feasibility of the novel solar energy based CO2 system for dairy plants where there is a simultaneous need for heating, refrigeration and electrical power. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:在适用于乳制品应用的新型太阳能的基于太阳能的三合一组织系统上进行了简单的热力学分析。 CO2被认为是整个系统的工作流体,其中喷射器取代节流阀。获得了重要设计和操作参数对系统性能的影响。表现在整体COP,特定净功率输出和特定牛奶流量方面。操作参数范围被约束以始终产生净正电量输出。结果表明,牛奶热交换器强烈影响性能。当气体冷却压力降低和环境温度增加时,特定净功率输出增加。然而,在较高的气体冷却器压力和更低的环境温度下,特定的牛奶流速和整体COP高。这表明需要根据牛奶流速或功率输出的要求来控制气体冷却器压力。对于所考虑的操作参数范围,发现了Trigemeration系统的整体COP约为0.8。使用工作回收扩展器代替喷射器将整体警察增加约12%。然而,当喷射器用传统的节流阀替换时,从系统输出的净功率变为负。预计这项初步研究可用于评估新型太阳能基于乳制品的CO2系统的可行性,其中乳制品植物可以同时需要加热,冷藏和电力。 (c)2019年Elsevier Ltd和IIR。版权所有。

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