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Experimental Investigations for rheological characteristics of TiO2 nanopartkles doped diesel, biodiesel fuel blends for use in compression ignition engine

机译:TiO2纳米粒子流变特性的实验研究掺杂柴油,生物柴油燃料混合用于压缩点火发动机

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The present experimental study aims to investigate the variations in rheological characteristics of TiO2 nanoparticles doped biodiesel diesel fuel blends at different temperatures and nanoparticle mass fractions. Fuel blends of Acacia Concinna biodiesel {AC BD) in the volume fraction of 40% are mixed with in the remaining 60% volume fraction of mineral diesel. Fuel blends are modified by doping TiO2 nanoparticles in the weight fraction of 0.1, 0.2, 0.3 and 0.4 g/liter in biodiesel diesel fuel blends. These modified fuel blends (MNF) are prepared by means of mechanical stirring and ultra-sonication process, which are tested on Rheometer in a temperature range of 293K-363K under different shear rates. The experimental results showed that at concentration of 0.4 g/liter the viscosity of modified fuel blend (MNF0.4) was 7.16% more than the viscosity of mineral diesel. This increase in viscosity of MNF fuel blends are undesirable due to the fact that high injection pressure is required for proper atomization and combustion of fuel, which otherwise overshadows the gain in total heat release rate due to high heat of combustion of Ti02 nanoparticles. Furthermore, rheological characteristics of nanoparticle mixed modified fuel blends are found to be non-Newtonian and shear thinning. The findings of present study ascertain us that modified fuel blend up to 0.2 g/liter of Ti02 nanoparticle concentration (MNF0.2) in AC can be used as alternative fuel without much modifications in the operating and design parameters of existing diesel engine.
机译:本实验研究旨在研究不同温度和纳米颗粒质量级分的TiO2纳米颗粒掺杂生物柴油柴油燃料混合物的流变特性的变化。在40%的体积分数中,金合欢Concinna生物柴油(AC BD)的燃料共混物与剩余的60%矿物柴油体积分数混合。通过在生物柴油柴油燃料共混物中掺杂0.1,0.2,0.3和0.4g /升的重量分数中的TiO2纳米颗粒进行改性燃料混合物。通过机械搅拌和超超声处理制备这些改性燃料共混物(MNF),其在不同剪切速率下在293k-363k的温度范围内测试了流变仪。实验结果表明,在0.4g /升浓度为0.4g /升的浓度下,改性燃料混合物(MnF0.4)的粘度比矿物柴油的粘度大7.16%。由于需要高喷射压力和燃料的燃烧所需的事实,因此,由于需要高喷射和燃烧所需的燃料,因此由于TiO 2纳米颗粒的高热,因此,MNF燃料混合物的粘度增加是不希望的。此外,发现纳米颗粒混合改性燃料共混物的流变特性是非牛顿和剪切稀疏。目前研究的发现确定了,AC中的改性燃料混合高达0.2g /升TiO 2纳米颗粒浓度(MNF0.2)可用作替代燃料,而在现有柴油发动机的操作和设计参数中没有太大修改。

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