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Thermal Analysis and Experimental Investigations on the Effect of Thermal Barrier Coating on the Behavior of a Compression Ignition Engine Operated with Methyl Esters of Waste Cooking Oil

机译:热障涂层对压缩点火发动机行为的热分析及实验研究,废料烹饪油甲酯用甲酯

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One of the globally challenging issues today is Waste Utilization. The excessive accumulation of waste has created an uncomfortable pressure on not, just the habitant but on the environment as well. As a small step forward in contributing towards minimizing waste disposal, this study attempts to address the problem raised due to the disposal of waste cooking oil. Researchers found that Waste Cooking Oil (WCO) has a very good potential as a fuel for compression ignition engine and was therefore selected for this study. In the first phase of the work, behaviour of the test engine was studied with neat WCO at different power outputs. As the first modification, neat WCO was converted in to its methyl ester and tested in the same engine. Next, combustion chamber parts like piston and cylinder head, inlet and exhaust valves were coated with Thermal Barrier Coating (TBC) and engine behaviour was studied. To make the study more interesting a thermal- stress analysis was done on the engine piston to examine the impact of coating on engine performance. Results claimed that Brake Thermal Efficiency (BTE) of the engine operated with methyl esters of WCO showed marked improvement as compared to its neat form. However, the smoke emission was found to be still on the higher range with methyl ester of WCO. Engine results with thermal barrier coating reported improved BTE as compared to the earlier case. Interestingly, all the carbon based emissions were drastically reduced at the cost of increased oxides of nitrogen emissions. It was also found from the analysis that the surface temperature of the coated surface was higher than that of the uncoated surface. Thus, this work concludes that WCO in the form of its methyl ester can be used effectively in the compression ignition engine with a slight modification of the combustion chamber parts.
机译:今天的全球挑战性问题之一是废物利用。过度积累的废物产生了不舒服的压力,而不是习惯,而是对环境也是如此。作为促进浪费消除最大限度地提高废物处理的一小步,这项研究试图解决由于废物食用油的处理而提出的问题。研究人员发现,废物烹饪油(WCO)具有非常好的潜力作为压缩点火发动机的燃料,因此为本研究选择。在工作的第一阶段,在不同的功率输出处用整齐的WCO研究了测试引擎的行为。作为第一改性,将整齐的WCO转化为其甲酯并在同一发动机中进行测试。接下来,燃烧室部件如活塞和气缸盖,入口和排气阀涂覆有热阻挡涂层(TBC),并研究发动机行为。为了使研究更有趣地在发动机活塞上完成热应力分析,以检查涂层对发动机性能的影响。结果要求与WCO的甲酯操作的发动机的制动热效率(BTE)显示出明显的改善,与其纯形式相比。然而,发现烟雾排放仍然是WCO的甲酯的较高范围。与先前的情况相比,发动机导致热屏障涂层报告了改进的BTE。有趣的是,所有碳基排放都以增加的氮排放量的成本急剧下降。还发现从分析中发现涂覆表面的表面温度高于未涂覆的表面的表面温度。因此,该工作得出结论,其甲酯形式的WCO可以在压缩点火发动机中有效地使用,燃烧室部件略微改变。

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