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Experimental Studies on the Performance of C.I. Engine with Fish Oil Methyl Ester as Fuel for Various Blends of Diesel and LPG

机译:C.I的性能实验研究。发动机用鱼油甲酯作为柴油和液化石油气的各种共混物的燃料

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Fossil fuels are exhausting quickly because of incremental utilization rate due to increase population and essential comforts on par with civilization. In this connection, the conventional fuels especially petrol and diesel for internal combustion engines, are getting exhausted at an alarming rate. In order to plan for survival of technology in future it is necessary to plan for alternate fuels. Further, these fossil fuels cause serious environmental problems as they release toxic gases into the atmosphere at high temperatures and concentrations. The predicted global energy consumption is increasing at faster rate. In view of this and many other related issues, these fuels will have to be replaced completely or partially by less harmful alternative, eco-friendly and renewable source fuels for the internal combustion engines. Hence, throughout the world, lot of research work is in progress pertaining to suitability and feasibility of alternative fuels. Biodiesel is one of the promising sources of energy to mitigate both the serious problems of the society viz., depletion of fossil fuels and environmental pollution. In the present work, experiments are carried out on a Single cylinder diesel engine which is commonly used in agricultural sector. Experiments are conducted by fuelling the diesel engine with bio-diesel with LPG through inlet manifold. The engine is properly modified to operate under dual fuel operation using LPG through inlet manifold as fuel along FME as ignition source. The brake thermal efficiency of FME with LPG (2LPM) blend is increased at an average of 5% when compared to the pure diesel fuel. HC emissions of FME with LPG (2LPM) blend are reduced by about at an average of 21% when compared to the pure diesel fuel. CO emissions of FME with LPG (2LPM) blends are reduced at an average of 33.6% when compared to the pure diesel fuel. NO_x emissions of FME with LPG (2LPM) blend are reduced at an average of 4.4% when compared to the pure diesel fuel. Smoke opacity of FME with LPG (2LPM) blend is reduced at an average of 10% when compared to the pure diesel fuel.
机译:由于增加了文明,由于增加了人口和基本舒适性,因此化石燃料随着增量利用率而迅速疲惫。在这方面,常规燃料尤其是用于内燃机的汽油和柴油,以惊人的速度耗尽。为了计划在未来的技术存活下,有必要计划替代燃料。此外,这些化石燃料导致严重的环境问题,因为它们在高温和浓度下释放到大气中的有毒气体。预测的全球能量消耗以更快的速度增加。鉴于这一和许多其他相关问题,这些燃料将不得不完全或部分地通过对内燃机的较少有害的替代,环保和可再生的源燃料进行更换或部分地更换。因此,全世界,许多研究工作都与替代燃料的适用性和可行性有关。生物柴油是有希望的能源来源,以减轻社会Qiz的严重问题。,化石燃料的消耗和环境污染。在本作的工作中,实验在一个常用于农业部门的单个气缸柴油发动机上进行。通过用进样口歧管用LPG加速与生物柴油的柴油发动机进行实验。发动机被适当地修改以在双燃料操作下使用LPG通过入口歧管作为沿FME作为点火源的燃料操作。与纯柴油燃料相比,具有LPG(2LPM)混合物的FME的制动热效率平均增加5%。与纯柴油燃料相比,具有LPG(2LPM)共混物的FME的HC排放量平均降低了21%。与纯柴油燃料相比,使用LPG(2LPM)共混物的FME(2LPM)混合物的CO排放平均减少33.6%。与纯柴油燃料相比,具有LPG(2LPM)混合物的FME(2LPM)混合物的FME的NO_X排放量平均降低了4.4%。与纯柴油燃料相比,FME具有LPG(2LPM)混合物的FME烟雾不透明度平均减少10%。

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