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Evaluation of the effect of fuel properties on the fuel spray and jet characteristics in a HGV DI diesel engine operated by used cooking oils

机译:评估燃料特性对用过的烹饪油操作的HGV DI柴油发动机中的燃料喷雾和喷射特性的影响

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摘要

Fuel injection systems in modern diesel engines are designed and built to comply with very stringent environmental standards. They should also meet the highest level of fuel economy. Drivability, rapid response and easy and accurate control are a common demand. Changing the fuel characteristics could affect the performance of the fuel injection system. This study focuses on the evaluation of fuel spray characteristics of straight used cooking oil (SUCO) and its blends with petroleum diesel (PD) as a surrogate for pure PD. Used cooking oil blends have quite different physical properties from those of pure PD. Data for the lower heating value (LHV), density and viscosity were obtained from laboratory analysis. These data were merged with the physical and thermodynamic conditions of the diesel engine of interest to evaluate the dynamic behaviour of the fuel jet in 360° of crank rotation namely, the compression stroke, and the power stroke including the injection process. Engine operational conditions were calculated using a diesel dual thermodynamic cycle taking into account fuel injection adjustment at three different speeds, namely, idle speed, maximum torque speed and rated power speed. The results showed that fuel jet characteristics vary with SUCO content in the fuel blend. Two ranges of SUCO content in the blends were distinguished, 0 – 80% SUCO content and 80 – 100% SUCO content. Both showed a constant rate of change of jet characters per 10% increase in SUCO content in the fuel blend. Lower rates of change of fuel characters were observed at 0-80% SUCO content. The higher the temperature, the lower the rate of change of fuel jet characteristics.
机译:现代柴油发动机中的燃油喷射系统的设计和制造均符合非常严格的环境标准。它们还应该满足最高的燃油经济性。普遍要求驾驶性能,快速响应以及简便准确的控制。更改燃油特性可能会影响燃油喷射系统的性能。这项研究的重点是评估直接用过的食用油(SUCO)及其与石油柴油(PD)的混合物作为纯PD的替代品的燃油喷雾特性。用过的食用油混合物的物理性质与纯PD的物理性质完全不同。通过实验室分析获得较低热值(LHV),密度和粘度的数据。将这些数据与目标柴油机的物理和热力学条件合并在一起,以评估在360°曲柄旋转(即压缩冲程)和包括喷射过程在内的动力冲程中燃料射流的动态行为。使用柴油双热力学循环计算发动机工况,其中考虑了在三种不同速度(即怠速,最大扭矩速度和额定功率速度)下的燃油喷射调节。结果表明,燃料喷射特性随燃料混合物中SUCO含量的变化而变化。共混物中的SUCO含量有两个范围,分别为0 – 80%SUCO含量和80 – 100%SUCO含量。两者均显示出燃料混合物中SUCO含量每增加10%,喷射特性的变化率就恒定。在0-80%SUCO含量下观察到较低的燃料特性变化率。温度越高,燃料喷射特性的变化率越低。

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