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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Improving the Performance of a Biogas Powered Dual Fuel Diesel Engine Using Emulsified Rice Bran Biodiesel as Pilot Fuel Through Adjustment of Compression Ratio and Injection Timing
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Improving the Performance of a Biogas Powered Dual Fuel Diesel Engine Using Emulsified Rice Bran Biodiesel as Pilot Fuel Through Adjustment of Compression Ratio and Injection Timing

机译:通过调节压缩比和喷射正时来提高以乳化米糠生物柴油为先导燃料的沼气双燃料柴油发动机的性能

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摘要

Emulsification is one of the proven techniques to control the pollutants of the diesel engines. The present work attempts to explore the effect of injection timing (IT) of pilot fuel and compression ratio (CR)for an emulsified rice bran biodiesel (RBB)-biogas powered dual fuel diesel engine. A two-phase stable water emulsion of rice bran methyl ester has been prepared by optimizing the factors such as water content (5% and 10%), surfactants (3%), and hydrophilic lipophilic balance (HLB) values (4.3, 5, and 6). The stability of the emulsions is determined on the basis of measurement of mean droplet diameter and stability test. For experimentation, a 3.5 kW single cylinder, direct injection (DI), water cooled, variable CR diesel engine is converted into a biogas run dual fuel diesel engine by connecting a venturi gas mixer at the inlet manifold. A set of combinations comprising CRs of 18, 17.5, and 17, and ITs of 23 deg, 26 deg, 29 deg, and 32 deg before top dead centers (BTDC) at different loading conditions are considered. The investigation demonstrates a maximum brake thermal efficiency (BTE) of 23.62% along with a liquid fuel replacement of 82.22% at pilot fuel IT of 29 deg BTDC and CR of 18. For the same combination, CO and HC emissions are found to be least in all the test cases.
机译:乳化是控制柴油机污染物的行之有效的技术之一。本工作试图探索乳化米糠生物柴油(RBB)-沼气双燃料柴油发动机的引燃燃料喷射正时(IT)和压缩比(CR)的影响。通过优化水分含量(5%和10%),表面活性剂(3%)和亲水亲脂平衡(HLB)值(4.3、5)等因素,制备了米糠甲酯的两相稳定水乳液。和6)。乳液的稳定性基于平均液滴直径的测量和稳定性测试来确定。为了进行实验,通过在进气歧管处连接文丘里混合气,将3.5 kW单缸,直喷(DI),水冷,可变CR柴油发动机转换为沼气驱动的双燃料柴油发动机。在考虑不同负载条件下的上止点(BTDC)之前,应考虑一组包括18、17.5和17的CR和23度,26度,29度和32度的IT的组合。调查表明,在29度BTDC的先导燃料IT和18的CR的情况下,最大制动热效率(BTE)为23.62%,液体燃料替代率为82.22%。对于相同的组合,发现的CO和HC排放最少在所有测试案例中。

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