Combustion and Emission Characteristics of Hydrous Ethanol–Gasoline Blends with Co-solvents in Spark-ignited Single cylinder Engine

A. Sathyanarayana, G. Hebbar, T. Sreenivasa, K. M. Harinikuma
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Abstract

In Brazil, hydrous ethanol is blended with gasoline and is successfully implemented in flexi fuel engines and it has the potential to directly compete with fossil fuels. However, the Ethanol Blending Program of India has not been successful due to non-availability of sugarcane molasses and could not achieve its 5% blending target based on the literature review study. Hydrous ethanol with co-solvent is proposed in this work as a promising blending oxidant instead of energy-intensive anhydrous ethanol in gasoline. This research work also delves into the challenges of using hydrous ethanol in gasoline blended fuel such as water tolerance, fuel properties, and fuel selection. The selected fuel sample 2EW30TBA10, which contains 30% hydrous ethanol and 10% TBA (t-butyl alcohol), and gasoline was selected based on water tolerance of the blended sample and stability. The combustion and emission characteristics of the selected fuel sample 2EW30TBA10 are studied in 4-stroke, single cylinder, water cooled engine, and the performances are compared to base fuel (E0) and reference fuel (E10). The significant contributions of the present research work are the development of combustion model using MATLAB using: Apparent heat release model (Model1) and Combustion pressure method (Model-2) and the results are validated using modified Wiebe function. There was an increase in brake thermal efficiency by 5% compared to base fuel (E0) and the specific fuel consumption (sfc) for 2EW30TBA10 fuel sample is 290 g/KWh as compared to E10, which is 300 g/KWh and for Petrol (E0), sfc is 360 g/KWh. There was a reduction in CO and HC emission compared to base fuel (E0) and an increase in NOx emissions. The cyclic variations of experimental results are validated using a non-linear regression model.
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含助溶剂的含水乙醇-汽油混合燃料在火花点火单缸发动机中的燃烧与排放特性
在巴西,含水乙醇与汽油混合,并成功地在灵活燃料发动机中实施,它有可能直接与化石燃料竞争。然而,根据文献综述研究,由于甘蔗糖蜜不可用,印度的乙醇混合计划未能成功,无法实现其5%的混合目标。本文提出了带助溶剂的水合乙醇作为一种很有前途的混合氧化剂来替代高耗能的无水乙醇。这项研究工作还深入探讨了在汽油混合燃料中使用含水乙醇的挑战,如耐水性、燃料特性和燃料选择。选择燃料样品2EW30TBA10,其中含有30%的含水乙醇和10%的TBA (t-丁醇),根据混合样品的耐水性和稳定性选择汽油。在四冲程、单缸、水冷发动机上研究了所选燃油样品2EW30TBA10的燃烧和排放特性,并与基础燃油(E0)和参考燃油(E10)进行了性能比较。本研究工作的重要贡献是利用MATLAB开发了燃烧模型:表观放热模型(Model1)和燃烧压力法(model2),并使用修正的Wiebe函数对结果进行了验证。与基础燃料(E0)相比,制动热效率提高了5%,2EW30TBA10燃料样品的比油耗(sfc)为290克/千瓦时,而E10为300克/千瓦时,汽油(E0)的比油耗(sfc)为360克/千瓦时。与基础燃料(E0)相比,CO和HC的排放减少了,而NOx的排放增加了。利用非线性回归模型验证了实验结果的循环变化。
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