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Modeling of the engine performance and exhaust emissions characteristics of a single-cylinder diesel using nano-biochar added into ethanol-biodiesel-diesel blends

机译:用纳米生物凝胶加入乙醇 - 生物柴油 - 柴油混合物的单缸柴油机性能和排气排放特性的建模

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摘要

This survey was aimed at investigating the effect of biodiesel/ethanol content, nano-biochar concentration, and engine speed on the engine performance and exhaust emission characteristics of a single-cylinder diesel engine. The different blend ratios of biodiesel/ethanol in neat diesel (0-8% by volume), nano-biochar particle concentrations (25-125 ppm), and engine speed (1800-2600 rpm) were used as input factors in RSM model. The experiments were designed, and models provided using the response surface method (RSM). All models derived for both engine performance and emissions variables were found to be statistically significant at a 95% confidence level. Interactive effects between the studied variables and responses were presented. In general, the inclusion of nano-biochar particles into diesel- biodiesel-ethanol blend showed a positive effect on both engine performance and exhaust emissions. The desirability approach based RSM was employed to predict the best engine working condition. The optimal engine working parameters for maximum engine performance and minimum exhaust emissions were identified as 2% biodiesel, 6% ethanol, 100 ppm nanoparticles, and 2123 rpm engine speed. The test results showed that at optimal parameters obtained, the values of the engine brake torque, power, BSFC, NOX, UHC, and CO were found to be 7.7 Nm, 1.7 kW, 219 g/kW h, 184 ppm, and 0.011%Vol., respectively.
机译:该调查旨在研究生物柴油/乙醇含量,纳米BioChOn浓度和发动机速度对单缸柴油发动机的发动机性能和排气特性的影响。将生物柴油/乙醇中的不同混合比(0-8重量%),纳米生物淀粉颗粒浓度(25-125ppm)和发动机速度(1800-2600rpm)用作RSM模型中的输入因子。设计了实验,并使用响应面法(RSM)提供的型号。由于发动机性能和排放变量的所有模型都被发现在95%的置信水平下具有统计学意义。介绍了研究变量与响应之间的交互式效果。通常,将纳米生物淀粉含入柴油机 - 生物柴油 - 乙醇共混物对发动机性能和废气排放的阳性作用。基于RSM的期望方法预测最佳发动机工作条件。最大发动机性能和最小废气排放的最佳发动机工作参数被鉴定为2%生物柴油,6%乙醇,100ppm纳米粒子和2123rpm发动机速度。测试结果表明,在获得最佳参数时,发现发动机制动扭矩,动力,BSFC,NOx,UHC和CO的值为7.7nm,1.7kW,219g / kW H,184 ppm和0.011%卷。分别。

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