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Performance Evaluation and Wear Analysis of a Compression Ignition Engine Operating with Straight Vegetable Oil and Diesel Blend

机译:直型植物油和柴油混合物对压燃式发动机的性能评估和磨损分析

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Now-a-days uses of alternative fuels in internal combustion engines are essential due to limited reserve and harmful combustion effects offossil fuels. The various alternative fuels upon which research works are going on are CNG, LPG, biodiesel, hydrogen etc. Among these, biodiesel plays an important role for diesel engines. Literature review reveals that in some cases even 50% biodiesel can be used in diesel engines where satisfactory performance and emission results have been obtained. Biodiesel is producedfrom vegetable oils like Neem, Karanja, Jatropha, Castor, Mahua etc. through transesterification process which makes vegetable oil less viscous. But transesterificationprocess requires some money, man and machine. So instead of using higher proportion of biodiesel with mineral diesel, we can significantly use lower percentage of straight vegetable oils with conventional diesel to make them use in engines. With a view to investigate on straight vegetable oil without making them biodiesel through transesterification process, neem vegetable oil is taken in this present study. Various blends of diesel and neem have been prepared like N30 fuel has been prepared in which 30% straight neem vegetable oil is mixed with 70% mineral diesel by volume. Now a single cylinder, four strokes, constant compression ratio, water cooled, vertical diesel engine is run by these fuel blends as well as by neat diesel. Various physical, chemical and thermal properties have been studied by using standard apparatus. Performance and emission results have been taken and compared with those of using mineral diesel. Wear has negative effects on the operating of engine parts. Wear rate determination are taken into account with a view to develop a maintenance programme. For measurement of wear rate, Ferrographic technique (both quantitative and qualitative) has been used. Lubricating oil from crank has been collected after 5, 10, 15 and 20 h. Wear particle concentration (WPC) have been studied and images are taken using Ferro scope. Results show that wear rate is marginal. Now we need to check wear results for long duration running of the engine. Therefore, considering all aspects i.e. performance, emission and wear rate we can use small portions of vegetable oil with mineral diesel for short duration.
机译:由于有限的储备和有害的燃烧影响,如今在内燃机中替代燃料的使用必不可少。正在进行研究工作的各种替代燃料包括CNG,LPG,生物柴油,氢气等。其中,生物柴油在柴油发动机中起着重要的作用。文献综述显示,在某些情况下,即使获得了令人满意的性能和排放结果,柴油发动机中也可以使用50%的生物柴油。生物柴油是通过酯交换工艺由植物油如印Ne,卡拉汉果,麻风树,蓖麻,马化花等生产的,从而使植物油的粘度降低。但是酯交换过程需要一些金钱,人力和机器。因此,与其在矿物柴油中使用更高比例的生物柴油,不如在传统柴油中使用更低比例的纯植物油,以使其在发动机中使用。为了研究纯植物油而不通过酯交换过程使它们成为生物柴油,本研究采用印em植物油。制备了柴油和印ne的各种混合物,例如制备了N30燃料,其中将30%的直straight印植物油与70%的矿物柴油按体积混合。现在,这些混合燃料以及纯柴油都在运行单缸,四冲程,恒定压缩比,水冷立式柴油发动机。通过使用标准设备已经研究了各种物理,化学和热性能。取得了性能和排放结果,并与使用矿物柴油的性能和排放结果进行了比较。磨损会对发动机零件的运行产生负面影响。考虑磨损率确定以制定维护计划。为了测量磨损率,已使用铁磁照相技术(定量和定性)。 5、10、15和20小时后,已收集了来自曲柄的润滑油。已经研究了磨损颗粒浓度(WPC),并使用Ferro示波器拍摄了图像。结果表明,磨损率很小。现在,我们需要检查发动机长期运转的磨损结果。因此,考虑到所有方面,即性能,排放和磨损率,我们可以在短时间内使用少量的植物油和矿物柴油。

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