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RSM based optimization of performance and emission characteristics of DI compression ignition engine fuelled with diesel/aegle marmelos oil/diethyl ether blends at varying compression ratio, injection pressure and injection timing

机译:基于RSM的DI压缩点火发动机的性能和排放特性的优化,该发动机使用柴油/鹰嘴豆油/二乙醚混合物在不同的压缩比,喷射压力和喷射定时下进行燃料喷射

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摘要

In the support of developing a substitute for diesel fuel automobiles, the research in renewable energy has been focused due to the hurly-burly situation for petroleum combat and environmental causes. The present study has been carried out in a naturally aspirated light-duty variable compression ratio (VCR) multi-fuel research engine. As input amends, three significant input parameters as injection pressure (IP), compression ratio (CR) and injection timing (IT) have been taken. In this test, the input parameters are taken as 210 bar, 230 bar, 250 bar for IP and 16, 17, 18 for CR and 21 degrees, 23 degrees, 25 degrees before top dead center (bTDC) for IT. To outline the resulting output parameters like performance and emissions, the statistical tool like the design of experiments (DoE) have been used for planning the experimental trials. The lesser exhaust pollution and better performance are the desirable output factors by optimizing the input parameters via factorial design. For validating the models developed using response surface methodology (RSM), the confirmatory tests have been carried out to portray the combined effects of CR, IP and IT on the engine characteristics using all test fuels. Maximum Brake thermal efficiency of 30.05% was found for F(1) fuel at 230 bar IP and 18 CR with 23 degrees bTDC IT. Minimum carbon monoxide of 0.41% was observed at IP of 230 bar and CR of 18 with 25 degrees bTDC IT and oxides of nitrogen of 205.7 ppm was found at 250 bar IP and 16 CR with 25 degrees bTDC IT for F(1) fuel.
机译:在开发柴油燃料汽车的替代品的支持下,由于石油作战和环境原因的动荡局面,可再生能源的研究已成为重点。本研究是在自然吸气轻型可变压缩比(VCR)多燃料研究引擎中进行的。作为输入修正,已采用了三个重要的输入参数,例如喷射压力(IP),压缩比(CR)和喷射正时(IT)。在此测试中,输入参数对于IP而言为210 bar,230 bar,250 bar,对于CR而言为16、17、18,对于IT而言,其上死点(bTDC)为21度,23度,25度。为了概述最终的输出参数(如性能和排放),已使用统计工具(如实验设计(DoE))来计划实验试验。通过因子设计优化输入参数,减少废气污染和提高性能是理想的输出因子。为了验证使用响应面方法(RSM)开发的模型,已进行了验证性测试,以显示使用所有测试燃料的CR,IP和IT组合对发动机特性的综合影响。发现F(1)燃料在230 bar IP和18 CR和23度bTDC IT时的最大制动热效率为30.05%。对于F(1)燃料,在230 bar的IP和25 barTDC IT下的CR为18时,观察到最小一氧化碳为0.41%,在250 bar IP和25°bTDC IT下CR为16 CR时,发现205.7 ppm的氮氧化物。

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