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Comparison of Diesel Engine Efficiency and Combustion Characteristics Between Different Bore Engines

机译:不同缸径发动机的柴油机效率和燃烧特性比较

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This study investigates the effects of engine bore size on diesel engine performance and combustion characteristics, including in-cylinder pressure, ignition delay, burn duration, and fuel conversion efficiency, using experiments between two diesel engines of different bore sizes. This study is part of a larger effort to discover how fuel property effects on combustion, engine efficiency, and emissions may change for differently sized engines. For this specific study, which is centered only on diagnosing the role of engine bore size on engine efficiency for a typical fuel, the engine and combustion characteristics are investigated at various injection timings between two differently sized engines. The two engines are nearly identical, except bore size, stroke length, and consequently displacement. Although most of this diagnosis is done with experimental results, a one-dimensional model is also used to calculate turbulence intensities with respect to geometric factors; these results help to explain observed differences in heat transfer characteristics of the two engines. The results are compared at the same brake mean effective pressure (BMEP) and show that engine bore size has a significant impact on the indicated efficiency. It is found that the larger bore engine has a higher indicated efficiency than the smaller displaced engine. Although the larger engine has higher turbulence intensities, longer burn durations, and higher exhaust temperature, the lower surface area to volume ratio and lower reaction temperature leads to lower heat losses to the cylinder walls. The difference in the heat loss to the cylinder walls between the two engines is found to increase with increasing engine load. In addition, due to the smaller volume-normalized friction loss, the larger sized engine also has higher mechanical efficiency. In the net, since the brake efficiency is a function of indicated efficiency and mechanical efficiency, the larger sized engine has higher brake efficiency with the difference in brake efficiency between the two engines increasing with increasing engine load. In the interest of efficiency, larger bore designs for a given displacement (i.e., shorter strokes or few number of cylinders) could be a means for future efficiency gains.
机译:这项研究使用两个不同口径的柴油机之间的实验研究了发动机缸径对柴油机性能和燃烧特性的影响,包括缸内压力,点火延迟,燃烧持续时间和燃料转换效率。这项研究是一项更大努力的一部分,旨在发现不同尺寸的发动机如何改变燃料特性对燃烧,发动机效率和排放的影响。对于仅针对诊断发动机孔径对典型燃料的发动机效率的作用这一特定研究,在两个不同尺寸的发动机之间的各种喷射正时研究了发动机和燃烧特性。除了缸径,冲程长度和排量外,这两个发动机几乎相同。尽管大部分诊断是通过实验结果完成的,但也可以使用一维模型来计算关于几何因素的湍流强度。这些结果有助于解释观察到的两种发动机的传热特性差异。在相同的制动平均有效压力(BMEP)下比较结果,结果表明发动机缸径对指示效率有重大影响。发现大口径发动机比小排量发动机具有更高的指示效率。尽管较大的发动机具有较高的湍流强度,较长的燃烧持续时间和较高的排气温度,但较低的表面积体积比和较低的反应温度导致较低的汽缸壁热损失。发现随着发动机负荷的增加,两个发动机之间的汽缸壁的热损失之差增加。另外,由于体积归一化的摩擦损失较小,因此大型发动机也具有较高的机械效率。实际上,由于制动效率是指示效率和机械效率的函数,因此大型发动机具有较高的制动效率,而随着发动机负荷的增加,两个发动机之间的制动效率差异也随之增加。为了提高效率,对于给定的排量(即,较短的冲程或较少的气缸数),较大的孔设计可能是将来提高效率的一种手段。

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