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Theoretical research of carbon dioxide power cycle application in automobile industry to reduce vehicle's fuel consumption

机译:二氧化碳动力循环在汽车工业中降低汽车燃油消耗的理论研究

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The current work discusses means to utilize low-grade small-scale energy in vehicle exhaust gases, to reduce the vehicle's fuel consumption and to make it run more environmental friendly. To utilize the energy in the exhaust gas, a CO2 bottoming system in the vehicle's engine system is proposed. Several basic cycles-according to the different design concepts-are presented, and the efficiencies are calculated using Engineering Equation Solver (EES).(1)Several thermodynamic models in EES show that after system optimization, in CO2 Transcritical power cycle with a gas heater pressure of 130 bars and 200 degrees C expansion inlet temperature, about 20% of energy in the exhaust gas can be converted into useful work. Increasing the pressure in the gas heater to 300 bars and with same expansion inlet temperature, about 12% of exhaust gas energy can be converted. When raising the pressure both in the gas cooler and in the gas heater, the cycle runs completely above the critical point, and the efficiency is about 19%. Besides, in the CO2 combined cycle, the system COP is 2.322 and about 5% of exhaust gas energy can be converted. (c) 2005 Elsevier Ltd. All rights reserved.
机译:当前的工作讨论了在车辆废气中利用低等级的小规模能源,减少车辆的燃油消耗并使其更环保的方法。为了利用废气中的能量,提出了一种在车辆的发动机系统中的二氧化碳底馏系统。根据不同的设计概念,提出了几个基本循环,并使用工程方程求解器(EES)计算了效率。(1)EES中的多个热力学模型表明,经过系统优化后,在带有燃气加热器的CO2跨临界功率循环中在130巴的压力和200摄氏度的膨胀入口温度下,废气中约20%的能量可以转化为有用功。将气体加热器中的压力提高到300 bar,并且在相同的膨胀入口温度下,可以转化约12%的废气能量。当同时提高气体冷却器和气体加热器中的压力时,循环会完全在临界点以上运行,效率约为19%。此外,在CO2联合循环中,系统COP为2.322,约5%的废气能量可以转化。 (c)2005 Elsevier Ltd.保留所有权利。

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