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A comparative study on methanol/diesel and methanol/PODE dual fuel RCCI combustion in an automotive diesel engine

机译:汽车柴油机中甲醇/柴油和甲醇/ PODE双燃料RCCI燃烧的比较研究

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In the present work, an attempt was made to study and compare the effect of Methanol/Diesel and Methanol/PODE RCCI combustion in a 3-cylinder, turbocharged, CRDI, diesel engine. The test engine was suitably modified to use dual fuels by incorporating methanol port fuel injection system and an open electronic control unit. Experiments have been conducted at 3.4 bar BMEP and 1500 rpm by varying methanol premixed mass fraction at a constant CA50 of about 10 degrees CA aTDC. The results show that increasing methanol mass fraction prolonged the ignition delay, decreased the in-cylinder pressure for both Methanol/Diesel and Methanol/PODE RCCI operation. At a premixed mass fraction of 80%, the maximum brake thermal efficiency of both Methanol/Diesel and Methanol/PODE is about 31% which is 3.5% higher than the conventional diesel combustion. Brake specific oxides of nitrogen and soot emissions are significantly reduced for both dual fuel RCCI combustion with increased methanol mass fraction. However, Brake specific hydrocarbon and carbon monoxide emissions are slightly increased. At a constant premixed mass fraction, Methanol/PODE dual fuel RCCI combustion resulted in more BSNO emission than Methanol/Diesel RCCI combustion. However, lower BSHC, BSCO and soot emissions are observed with Methanol/PODE dual fuel RCCI combustion compared to Methanol/Diesel RCCI combustion. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在当前的工作中,试图研究和比较三缸涡轮增压CRDI柴油机中甲醇/柴油和甲醇/ PODE RCCI燃烧的影响。通过结合甲醇进气道燃油喷射系统和开放式电子控制单元,对测试发动机进行了适当的修改,以使用双燃料。已经通过在约10度CA aTDC的恒定CA50下改变甲醇预混合质量分数,在3.4 bar BMEP和1500 rpm下进行了实验。结果表明,对于甲醇/柴油和甲醇/ PODE RCCI操作,增加甲醇的质量分数可延长点火延迟,降低缸内压力。在预混合质量分数为80%的情况下,甲醇/柴油和甲醇/ PODE的最大制动热效率均为31%,比传统的柴油燃烧高3.5%。对于双燃料RCCI燃烧,随着甲醇质量分数的增加,氮和碳烟排放物的制动器特定氧化物均显着降低。但是,制动专用碳氢化合物和一氧化碳的排放量略有增加。在恒定的预混合质量分数下,甲醇/ PODE双燃料RCCI燃烧比甲醇/柴油RCCI燃烧产生更多的BSNO排放。但是,与甲醇/柴油RCCI燃烧相比,甲醇/ PODE双燃料RCCI燃烧的BSHC,BSCO和烟尘排放量更低。 (C)2019 Elsevier Ltd.保留所有权利。

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