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PREDICTION OF PERFORMANCE MAPS FOR HOMOGENEOUS-CHARGE COMPRESSION-IGNITION ENGINES

机译:均质充压点火发动机的性能图预测

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Performance maps are useful for evaluating potential engine designs because they encompass the full range of engine speeds and loads encountered in a normal driving cycle; however, these maps are time-consuming and expensive to construct experimentally. An efficient method is presented for constructing performance maps for homogeneous-charge compression-ignition (HCCI) engines by determining the optimum operating conditions (equivalence ratio, valve timing, etc.) and associated performance characteristics (fuel consumption, peak cylinder pressure, etc.). The numerical procedure used to construct the performance maps combined engine cycle simulations to model the gas exchange process and perfectly stirred reactor (PSR) simulations to model the compression, combustion, and expansion processes. A fast numerical solver was employed to exploit sparsity in the PSR model equations and allowed the use of very detailed kinetic mechanisms for primary reference fuel and n-heptane. A major limitation of HCCI engines is that they are limited to low load operation because of engine "knocking" at higher loads. A fundamental criterion is presented for predicting the HCCI knock limit and the corresponding upper bound on engine load. This modeling strategy is first used to simulate a baseline engine that has been tested experimentally. Subsequently, several other cases are described which investigate the influence of compression ratio, fuel, and supercharging on HCCI performance. It is observed that acceptably high loads (11 bar brake mean effective pressure) can be achieved without knocking using an HCCI engine with a relatively low compression ratio, low-octane fuel, and moderate boost pressure. For the cases investigated, knocking occurred for equivalence ratios greater than about 0.6, and the fundamental origin of this limit is discussed.
机译:性能图对于评估潜在的发动机设计很有用,因为它们涵盖了正常行驶周期中发动机转速和负载的全部范围;然而,这些地图实验耗时且昂贵。通过确定最佳工况(等效比,气门正时等)和相关的性能特征(油耗,峰值气缸压力等),提出了一种用于构建均质压燃式(HCCI)发动机性能图的有效方法。 )。用于构造性能图的数值程序结合了发动机循环模拟来模拟气体交换过程,以及完美搅拌反应堆(PSR)模拟来模拟压缩,燃烧和膨胀过程。一个快速的数值解算器被用来开发PSR模型方程式中的稀疏性,并允许使用非常详细的动力学机制作为主要参考燃料和正庚烷。 HCCI发动机的主要局限性在于,由于发动机在较高负荷下会“爆震”,因此它们仅限于低负荷运行。提出了用于预测HCCI爆震极限和发动机负荷的相应上限的基本标准。该建模策略首先用于模拟已通过实验测试的基准引擎。随后,描述了几种其他情况,这些情况研究了压缩比,燃料和增压对HCCI性能的影响。可以观察到,使用具有相对较低压缩比,低辛烷值燃料和中等增压压力的HCCI发动机,无需爆震就可以实现可接受的高负载(11 bar制动平均有效压力)。对于所研究的情况,当当量比大于约0.6时会发生爆震,并讨论了该极限的基本来源。

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