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首页> 外文期刊>SAE International Journal of Engines >BSFC Improvement by Diesel-Rankine Combined Cycle in the High EGR Rate and High Boosted Diesel Engine
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BSFC Improvement by Diesel-Rankine Combined Cycle in the High EGR Rate and High Boosted Diesel Engine

机译:高EGR率和高增压柴油机的柴油-朗肯联合循环改善BSFC。

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摘要

In heavy duty diesel engines, waste heat recovery systems are remarkable means for fuel consumption improvement. In this paper, Diesel-Rankine combined cycle which is combined diesel cycle with Rankine cycle is studied to clarify the quantitative potential of fuel consumption improvement with a high EGR rate and high boosted diesel engine. The high EGR rate and high boosted diesel engine of a single cylinder research engine was used and it reaches brake specific fuel consumption (BSFC) of 193.3 g/kWh at full load (BMEP=2.0MPa). And its exhaust temperature reaches 370 C. The exhaust gas temperature does not exceed 400 C in high boosted diesel engine even at full load operating condition because of a high excess air ratio. On the other hand, exhaust gas quantity is larger due to a high boosting. So, it is estimated that the thermal energy of exhaust gas is enough for recovery in the high boosted diesel engine, although exhaust gas temperature is not so higher than that of an ordinary diesel engine. In the heat balance of the high boosted research diesel engine at medium engine speed, the exhaust loss is 38% at full load. From this result, it is possible to recover the exhaust gas energy, when engine is operated above medium load condition. In this predictive study, water, methanol, toluene, HCFC-123, R134a and R245fa are compared as working fluid in Rankine cycle with superheating. As a result of this study, it is found that Diesel-Rankine combined cycle has a potential to improve BSFC for 2.6 - 3.0% at full load condition.
机译:在重型柴油发动机中,废热回收系统是改善燃油消耗的重要手段。本文研究了柴油-朗肯联合循环,即柴油循环与朗肯循环的组合,以阐明在高EGR率和高增压柴油机的情况下改善燃油消耗的量化潜力。使用了单缸研究型发动机的高EGR率和高增压柴油发动机,在满载(BMEP = 2.0MPa)时,其制动油耗(BSFC)达到193.3 g / kWh。其排气温度达到370C。在高增压柴油机中,由于过高的空气比,即使在满负荷运行条件下,排气温度也不会超过400C。另一方面,由于高增压,排气量更大。因此,尽管排气温度并不比普通柴油发动机的温度高,但是据估计排气的热能足以在高增压柴油发动机中进行回收。在中等发动机转速的高增压研究型柴油机的热平衡下,满载时的排气损失为38%。根据此结果,当发动机在中等负载条件下运行时,可以回收废气能量。在这项预测性研究中,将水,甲醇,甲苯,HCFC-123,R134a和R245fa作为过热朗肯循环中的工作流体进行了比较。这项研究的结果是,发现柴油-朗肯联合循环有可能在满载条件下将BSFC提高2.6-3.0%。

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