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Experimental investigation of the Exhaust Gas Recirculation effects on irreversibility and Brake Specific Fuel Consumption of indirect injection diesel engines

机译:废气再循环对间接喷射柴油机不可逆性和制动比油耗影响的实验研究

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摘要

An experimental study was carried out to investigate the effect of using Exhaust Gas Recirculation (EGR) on various exergy terms of an IDI diesel engine cylinder. In this paper also the effectiveness of total in-cylinder irreversibility on Brake Specific Fuel Consumption (BSFC) in a diesel engine is investigated. To serve this aim an exergy analysis is conducted on the engine cylinder which provides all the availability terms by which the evaluation of in-cylinder irreversibilities is possible. The availability terms including heat transfer, inlet and exhaust gases and work output are presented during the engine operation at different load and speeds. To clarify the effect of using EGR in each case, EGR is introduced to the cylinder at various ratios during the tests. Finally, the dependence of total in-cylinder irreversibility and engine BSFC at particular engine operating conditions is introduced and the variations are compared. The results show that using EGR mostly increases the total in-cylinder irreversibility mainly due to extension of the flame region which reduces maximum combustion temperature. Also, the results revealed that the variations of the total in-cylinder irreversibility and engine BSFC follow the same trend especially at high load conditions.
机译:进行了一项实验研究,以研究使用废气再循环(EGR)对IDI柴油机气缸的各种火用项的影响。在本文中,还研究了总的缸内不可逆性对柴油发动机制动比燃油消耗(BSFC)的有效性。为了达到这个目的,在发动机气缸上进行了火用分析,该分析提供了所有可用条件,从而可以评估缸内不可逆性。在发动机运行期间,以不同的负载和速度列出了可用性术语,包括热传递,进气和排气以及功输出。为了阐明在每种情况下使用EGR的效果,在测试过程中将EGR以各种比率引入到气缸中。最后,介绍了在特定发动机工况下总缸内不可逆性和发动机BSFC的相关性,并比较了变化。结果表明,使用EGR主要增加了总的缸内不可逆性,这主要是由于火焰区域的扩大降低了最高燃烧温度。同样,结果表明,总的缸内不可逆性和发动机BSFC的变化遵循相同的趋势,尤其是在高负载条件下。

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