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Computational Investigation of the Effects of Piston Geometry on the Combustion Evolution in a Light Duty HSDI Engine

机译:轻型HSDI发动机中活塞几何形状对燃烧演化影响的计算研究

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The spatial and temporal distribution of fuel and air within the combustion chamber directly influences ignition, combustion and emissions formation in diesel engines. These fuel-air interactions are affected by details of the combustion chamber geometry and fuel injection parameters. This paper investigates the effects of piston bowl geometry and spray targeting on combustion behaviour in a single cylinder diesel engine. Closed cycle computational fluid dynamics simulations are performed on a sector mesh at various load points using the 3 Zones Extended Coherent Flame Model coupled with adaptive mesh refinement. The computational fluid dynamics model is validated experimentally at the baseline conditions at each test point after-which, parametric sweeps of bowl geometry, exhaust gas recirculation rate and nozzle tip protrusion are conducted. Results indicate that appropriately pairing fuel injection strategy and piston geometry is essential.
机译:燃烧室内燃料和空气的时空分布直接影响柴油机的点火,燃烧和排放物形成。这些燃料-空气相互作用受燃烧室几何形状和燃料喷射参数的细节影响。本文研究了活塞碗几何形状和喷雾目标对单缸柴油机燃烧行为的影响。使用3区域扩展相干火焰模型和自适应网格细化,在不同载荷点的扇形网格上执行闭环计算流体动力学模拟。在每个测试点的基线条件下,通过实验验证了计算流体动力学模型,然后对转鼓的几何形状,排气再循环率和喷嘴尖端伸出进行了参数扫描。结果表明,适当地配对燃料喷射策略和活塞几何形状是必不可少的。

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