首页> 外文会议>ASME Internal Combustion Engine Division technical conference >PREDICTING IGNITION AND COMBUSTION OF A PILOT IGNITED NATURAL GAS JET USING NUMERICAL SIMULATION BASED ON DETAILED CHEMISTRY
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PREDICTING IGNITION AND COMBUSTION OF A PILOT IGNITED NATURAL GAS JET USING NUMERICAL SIMULATION BASED ON DETAILED CHEMISTRY

机译:基于详细化学的数值模拟预测引燃天然气射流的点火和燃烧

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In this paper, a multidimensional computational fluid dynamics (CFD) model coupled with detailed chemistry calculations was used to analyze dual-fuel combustion based on high pressure direct injection of natural gas. The main focus was to analyze the capability of predicting pressure curve and heat release rate (HRR) for different injection strategies. Zero-dimensional homogeneous constant volume reactor calculations were used to select a reaction mechanism for the temperature range below 800 K. As the best-performing mechanism, the Chalmers mechanism was chosen. To validate the numerical model, the setup was first split into a single gas injection and a single Diesel injection. They were validated individually using shadowgraphs obtained from a Rapid Compression Expansion Machine (RCEM). Diesel ignition timing and position in the combustion chamber were close to experimental results. Gas direct injection showed good agreement with regard to penetration and mixing. In the dual-fuel setup, the injection timing of natural gas was varied to create a first case with mainly diffusive combustion and a second case with mainly premixed combustion of natural gas. For both setups good agreement with pressure curve and heat release rate were achieved. A qualitative comparison of shadowgraphs with the density field highlights the important points to predict dual-fuel combustion.
机译:本文采用多维计算流体动力学(CFD)模型并结合详细的化学计算方法来分析基于天然气高压直接注入的双燃料燃烧。主要重点是分析预测不同注射策略的压力曲线和放热率(HRR)的能力。使用零维均质恒容反应器计算来选择温度范围低于800 K的反应机理。选择了Chalmers机理作为性能最佳的机理。为了验证数值模型,首先将设置分为单次气体注入和单次柴油机注入。使用从快速压缩扩展机(RCEM)获得的阴影图分别对它们进行了验证。柴油的点火正时和在燃烧室内的位置接近实验结果。气体直接注入在渗透和混合方面表现出良好的一致性。在双燃料设置中,改变天然气的喷射正时以产生主要是扩散燃烧的第一种情况和主要是天然气的预混燃烧的第二种情况。对于这两种设置,都实现了与压力曲线和放热速率的良好一致性。阴影图与密度场的定性比较突出了预测双燃料燃烧的重要点。

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