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A Constant Equivalence Ratio Multi-Zone Approach for a Detailed and Fast Prediction of Performances and Emission in CI Engines

机译:一种恒定当量比多区域方法,用于详细、快速地预测 CI 发动机的性能和排放

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摘要

The paper illustrates and validates a novel predictive combustion model for the estimation of performances and pollutant production in CI engines. The numerical methodology was developed by the authors for near real-time applications, while aiming at an accurate description of the air mixing process by means of a multi-zone approach of the air-fuel mass. Charge stratification is estimated via a 2D representation of the fuel spray distribution that is numerically derived by an axial one-dimensional control-volume description of the direct injection. The radial coordinate of each control volume is reconstructed a posteriori by means of a local distribution function. Fuel mass clustered in each zone is further split in 'liquid', 'unburnt' and 'burnt' sub-zones, given the local properties of the fuel spray control volumes with respect to space-time location of modelled ignition delay, liquid length, and flame lift-off. Multiple injections are described on the same numerical grid to account for jet-to-jet axial interactions, whose effects reflect on improved ignition characteristics. The multi-zones are open systems which are discretized on the equivalence ratio; mass is allowed to travel from one to another, causing a 2D charge stratification. For each zone, local thermodynamic properties and NO_x production are determined to estimate cylinder-average performances and emissions. The apparent heat release rate, in-cylinder pressure, BSFC and NO_x emissions are validated against experimental data of full map of a light-duty engine. The computational effort of the model is relatively low, which makes the approach suitable for static optimization, to be used in 1-D simulation codes for transient's optimization and can be run in parallel with a real time 1-D gas model for the simulation of long driving cycles.
机译:本文说明了小说并验证预测燃烧模型的估计在CI表现以及污染物的生产引擎。作者对于实时应用程序,而针对一个精确的描述空气混合过程通过分域燃料质量的方法。通过2 d分层估计表示燃料的喷雾分布派生的数值轴一维的控制卷描述直接注入。控制体积重建后验一个当地的分布函数的方法。集中在每个区都是进一步分割“液体”,“未燃尽的”和“烧”的子区域,当地的燃油喷射控制的属性卷对时空的位置模拟点火延迟,液体长度和火焰发射。相同的数值网格jet-to-jet占轴向的相互作用,其效果反思改善点火特性。分域是开放系统离散等价比率;允许旅行从一个到另一个,导致2 d分层收费。热力学性质和NO_x的生产决心估计cylinder-average性能和排放。释放率、缸内压力、BSFC和NO_x排放对实验数据进行验证满地图的轻型发动机。计算模型的比较低,这使得该方法适用于静态的优化,用于一维仿真代码瞬态的优化和可以在运行与一个真正的时间一维气体模型模拟驾驶周期很长。

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