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Assessing Effects of Idling of a Diesel Engine Operated with Optimized Blend of Palm and Mustard Biodiesel

机译:用棕榈和芥末生物柴油优化柴油机怠速对柴油机怠速的影响

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Palm is an edible feedstock which is immensely popular in Malaysia as an alternative fuel which can substitute diesel fuel. However, use of Palm biodiesel in diesel engine have a negative effect on food security, thus, in this study authors used Mustard biodiesel, which has poor fuel properties, with Palm biodiesel to produce an optimum blend. This blend will have better fuel properties compared to Mustard biodiesel and will help eliminate dependency of Palm biodiesel. To ensure that optimized blend achieves better fuel properties MATLAB optimization tool was used to find out the optimum blend ratio. Linear relationship among the fuel properties was considered for MATLAB coding. The resultant optimum blend is represented by PM. Optimum blend revealed improved fuel properties compared to mustard biodiesel. Fuel consumption and exhaust emission of diesel engine operated by the produced optimized blend blends at high idling conditions with and without a turbocharger installed, were evaluated. Optimized blend achieved lower CO, HC and NO_x emission compared to Mustard biodiesel blends and also improved fuel consumption at idling conditions. When the engine was turbocharged it further decreased CO, HC and fuel consumption, but significantly increased NO_x emission.
机译:棕榈是一种可食用的原料,在马来西亚非常受欢迎,作为可以替代柴油燃料的替代燃料。然而,在柴油发动机中使用棕榈生物柴油对粮食安全产生负面影响,因此,在本研究中使用芥末生物柴油,燃料性能差,棕榈生物柴油产生了最佳混合物。与芥末生物柴油相比,这种混合物将具有更好的燃料特性,并有助于消除棕榈生物柴油的依赖。为确保优化的混合物实现更好的燃料特性,MATLAB优化工具用于找出最佳混合比。燃料性能之间的线性关系被认为是Matlab编码。得到的最佳共混物由PM表示。与芥末生物柴油相比,最佳混合物显示出改善的燃料特性。评估了由所产生的优化混合物操作的柴油发动机的燃料消耗和排气,在高怠速条件下,安装在具有涡轮增压器的高空转条件下。与芥末生物柴油混合物相比,优化的混合物达到了较低的CO,HC和NO_X排放,并在怠速条件下提高了燃料消耗。当发动机涡轮增压时,它进一步降低了CO,HC和燃料消耗,但显着增加了NO_X排放。

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