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首页> 外文期刊>Renewable energy >Simultaneous optimization of multiple operating engine parameters of a biodiesel-producer gas operated compression ignition (CI) engine coupled with hydrogen using response surface methodology
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Simultaneous optimization of multiple operating engine parameters of a biodiesel-producer gas operated compression ignition (CI) engine coupled with hydrogen using response surface methodology

机译:使用响应面方法同时优化生物柴油生产商气体驱动压缩点火(CI)发动机与氢气的多个发动机参数的同时优化

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This present work highlights the influence of injection timing (IT), injector opening pressure (IOP) and compression ratio (CR) on the combustion characteristics of a diesel engine operated on renewable and sustainable fuels. In this research work an effort has been made to enhance the combustion of fuel combination in a diesel engine with addition of carbon free hydrogen and in the direction of lowering the exhaust emission levels. Experimental investigations have been carried out to study the combustion and exhaust characteristics of a single cylinder, four stroke, direct injection (DI) diesel engine operated on Tri-fuel mode using Honge seed oil methyl ester (HsOME) as the injected fuel and producer gas-hydrogen mixture as the inducted fuel.. To minimize the number of experiments full factorial design (FFD) has been adopted. The response surface methodology (RSM) based quadratic models obtained through FFD have been established between the parameters and proposed characteristics. With hydrogen addition, response surface analysis showed that increasing CR, IOP with advanced IT significantly improves the combustion of HsOME-producer gas fueled diesel engine in terms of the enhanced brake thermal efficiency (BTE) and reduced carbon based emission levels (Smoke opacity, Carbon monoxide, Hydrocarbon) except the nitric oxide (NOx) emissions. Further combustion parameters such as Ignition delay (ID), and combustion duration were lowered with hydrogen addition, advanced IT, increased lOP and CR. In addition peak pressure and heat release rate (HRR) were found to be higher compared to base fuel combination. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本工作重点介绍了喷射正时(IT),喷射器打开压力(IOP)和压缩比(CR)对使用可再生和可持续燃料运行的柴油机燃烧特性的影响。在该研究工作中,已经做出努力以增加柴油中的燃料组合物的燃烧,并添加了无碳氢,并朝着降低废气排放水平的方向发展。已经进行了实验研究,以使用洪格油籽油甲酯(HsOME)作为喷射燃料和生产气,以三燃料模式运行的单缸四冲程直喷(DI)柴油机的燃烧和排气特性进行了研究。为了减少实验数量,已采用全因子设计(FFD)。在参数和建议特性之间建立了通过FFD获得的基于响应面方法(RSM)的二次模型。通过添加氢气,响应面分析表明,采用先进的IT技术,提高CR,IOP可以显着改善HsOME生产气燃料柴油发动机的燃烧,从而提高制动热效率(BTE)和降低碳基排放水平(烟不透明度,碳一氧化碳(NOx)排放除外。增加氢气,提高IT,增加IOP和CR可以降低进一步的燃烧参数,例如点火延迟(ID)和燃烧持续时间。另外,发现峰值压力和放热率(HRR)与基础燃料组合相比更高。 (C)2019 Elsevier Ltd.保留所有权利。

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