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Experimental investigation of unmodified diesel engine performance, combustion and emission with multipurpose additive along with water-in- diesel emulsion fuel

机译:未改性的柴油机性能,燃烧和多用途添加剂与水包柴油乳化燃料一起排放的实验研究

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摘要

The inspiration of the present work emerges from the formulation to enhance the combustion, emission and performance of a single cylinder diesel engine through modifying the fuel by adding an additive together with water-in-diesel emulsion fuel. 1,4-dioxane a hygroscopic, multipurpose substance was considered as one of the irreplaceable additive to be included with the ideal mix of DWS (89.8%diesel + 10%water + 0.2%surfactant) to enhance the engine attributes. In the present work, 1,4-dioxane was mixed with the optimized blend of DWS (10% water and 89.8% diesel), with varying concentrations of 5, 10, 15, 20% and denoted as DWSA5, DWSA10, DWSA15, DWSA20 respectively. With the expansion of 1,4-dioxane, the physical properties were enhanced. The sample fuels were analyzed with Fourier-transform infrared spectroscopy (FTIR) in order to find functional groups. An experiment was conducted with test fuels in a single cylinder, unmodified diesel engine. From the experimental data, it was revealed that, brake thermal efficiency (BTE) of DWSA10 increases up to 7% when compared with diesel fuel. Hydrocarbon (HC) and smoke decreases up to 31.66%, 27.83% respectively with diesel fuel. Brake specific energy consumption (BSEC) and carbon monoxide (CO) of DWSA10 decreased about 7.5%, 15% respectively on par with DWS fuel. From the obtained results, it was identified that test fuel (DWSA10) containing 10% 1,4-dioxane shows significant improvement in the engine performance and reduction in emission. DWSA10 may play a significant role for diesel engine in future without modifying the engine.
机译:本工作的灵感来自于通过添加添加剂和柴油中水乳化燃料来改进燃料,从而提高单缸柴油机的燃烧,排放和性能的配方。 1,4-二恶烷是一种具有吸湿性的多用途物质,被认为是DWS理想混合物(89.8%柴油+ 10%水+ 0.2%表面活性剂)中不可替代的添加剂,以增强发动机性能。在本工作中,将1,4-二恶烷与DWS的优化混合物(10%的水和89.8%的柴油)混合,其浓度分别为5、10、15、20%,分别表示为DWSA5,DWSA10,DWSA15,DWSA20分别。随着1,4-二恶烷的膨胀,物理性质得到增强。为了找到官能团,对样品燃料进行了傅里叶变换红外光谱(FTIR)分析。在未修改的单缸柴油发动机中使用试验燃料进行了实验。从实验数据表明,与柴油相比,DWSA10的制动热效率(BTE)提高了7%。使用柴油燃料时,碳氢化合物(HC)和烟气分别减少高达31.66%和27.83%。与DWS燃料相比,DWSA10的制动器比能耗(BSEC)和一氧化碳(CO)分别降低了约7.5%,15%。根据获得的结果,可以确定包含10%1,4-二恶烷的试验燃料(DWSA10)在发动机性能上有显着改善,并减少了排放。 DWSA10将来可能会在不修改柴油发动机的情况下对柴油发动机起重要作用。

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