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首页> 外文期刊>Energy >Compression ignition engine performance modelling using hybrid MCDM techniques for the selection of optimum fish oil biodiesel blend at different injection timings
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Compression ignition engine performance modelling using hybrid MCDM techniques for the selection of optimum fish oil biodiesel blend at different injection timings

机译:使用混合MCDM技术的压燃发动机性能建模,以在不同的喷射时间选择最佳的鱼油生物柴油混合物

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The increasing demand on energy due to population growth and rise of living standards has led to considerable use of fossil fuels which cause environmental pollution and depletion of fossil fuels. Biodiesel proves to be a good alternative for fossil fuels. But sustainability of biodiesel is the key factor for determining it as a fuel in diesel engines. It needs identification of proper blend of biodiesel and diesel to meet the efficiency, engine suitability and environmental acceptability. Alternative fuel blend evaluation in IC engine fuel technologies is a very important strategic decision tool involving balancing between a number of criteria such as performance, emission and combustion parameters and opinions from different decision maker of IC engine experts. Hence, it is a MCDM. problem. This paper describes the application of hybrid Multi Criteria Decision Making (MCDM) techniques for the selection of optimum biodiesel blend in IC engine. FAHP-TOPSIS, FAHP-VIKOR and FAHP-ELECTRE, are the three methods that are used to evaluate the best blend. The performances of these MCDM methods are also compared with each other. Here, FAHP is used to determine the relative weights of the criteria, whereas TOPSIS, VIKOR and ELECTRE are used for obtaining the final ranking of alternatives. A single cylinder, constant speed and direct injection diesel engine with a rated output of 4.4 kW is used for exploratory analysis of evaluation criteria at different load conditions. Diesel, B20, B40, B60, B80 and B100 fuel blends are prepared by varying the proportion of biodiesel. Similarly, Brake thermal efficiency (BTE), Exhaust gas temperature (EGT), Oxides of Nitrogen (NOx), Smoke, Hydrocarbon (HC), Carbon monoxide (CO), Carbon dioxide (CO2), Ignition Delay, Combustion Duration and Maximum Rate of Pressure Rise are considered as the evaluation criteria. The ranking of alternatives obtained by FAHP-TOPSIS, FAHP-VIKOR and FAHP-ELECTRE are B20 > Diesel > B40 > B60 > B80 > B100 for 21 degrees bTDC and 24 degrees bTDC and Diesel > B20 > B40 > B60 > B80 > B100 for 27 degrees bTDC. It shows that B20 is ranked first for 21 degrees bTDC and 24 degrees bTDC and second for 27 degrees bTDC injection timing. Hence, it is concluded that mixing 20% biodiesel with diesel is suggested as a good replacement for diesel. This paper provides a new insight of applying MCDM techniques to evaluate the best fuel blend by decision makers such as engine manufactures and R&D engineers to meet the fuel economy and emission norms to empower green revolution. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于人口增长和生活水平提高,对能源的需求不断增加,导致大量使用化石燃料,这会造成环境污染和化石燃料的枯竭。事实证明,生物柴油是化石燃料的良好替代品。但是生物柴油的可持续性是将其确定为柴油发动机燃料的关键因素。它需要确定生物柴油和柴油的适当混合物,以满足效率,发动机适用性和环境可接受性。集成电路发动机燃料技术中的替代燃料共混物评估是非常重要的战略决策工具,它涉及许多标准之间的平衡,例如性能,排放和燃烧参数以及来自集成电路发动机专家的不同决策者的意见。因此,它是一个MCDM。问题。本文介绍了混合多标准决策(MCDM)技术在IC发动机中选择最佳生物柴油混合物的应用。 FAHP-TOPSIS,FAHP-VIKOR和FAHP-ELECTRE是用于评估最佳混合的三种方法。这些MCDM方法的性能也进行了比较。在这里,FAHP用于确定标准的相对权重,而TOPSIS,VIKOR和ELECTRE用于获得替代方案的最终排名。使用额定输出功率为4.4 kW的单缸,恒速和直喷柴油发动机对不同负载条件下的评估标准进行探索性分析。柴油,B20,B40,B60,B80和B100燃料混合物是通过改变生物柴油的比例来制备的。同样,制动热效率(BTE),废气温度(EGT),氮氧化物(NOx),烟气,碳氢化合物(HC),一氧化碳(CO),二氧化碳(CO2),点火延迟,燃烧持续时间和最大速率升压之和被视为评估标准。由FAHP-TOPSIS,FAHP-VIKOR和FAHP-ELECTRE获得的替代品的排名是b20>柴油> B40> B60> B80> B100对于21度bTDC和24度bTDC和柴油> B20> B40> B60> B80> B100对于21度bTDC 27度bTDC。它显示B20在21度bTDC和24度bTDC方面排名第一,在27度bTDC注入时序方面排名第二。因此,可以得出结论,建议将20%的生物柴油与柴油混合,作为柴油的良好替代品。本文为应用决策决策者(MCDM)技术评估最佳燃料混合物提供了新的见解,决策者例如发动机制造商和研发工程师满足了燃油经济性和排放标准,从而推动了绿色革命。 (C)2017 Elsevier Ltd.保留所有权利。

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