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首页> 外文期刊>International journal of engine research >Investigation of charge preparation strategies for controlled premixed charge compression ignition combustion using a variable pressure injection system
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Investigation of charge preparation strategies for controlled premixed charge compression ignition combustion using a variable pressure injection system

机译:使用可变压力喷射系统研究可控预混合装料压缩点火燃烧的装料策略

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摘要

This paper uses a multi-dimensional computational fluid dynamics (CFD) code coupled with detailed chemistry, the KIVA-CHEMKIN code, to provide guidelines for solving problems with premixed combustion strategies, namely, lack of combustion phasing control, excessive pressure rise rate, and spray wall impingement due to early injections. A multiple injection concept is used to control combustion phasing and reduce the rate of peak pressure rise. To address spray-wall impingement, an adaptive injection strategy (AIS) using two-injection pulses at different injection pressures is employed. The combustion process considered is at a mid-load operating condition for the light-duty engine of the present study (nominal indicated mean effective pressure (IMEP) of 5.5 bar and high speed, 2000 r/min) and the effects of first and second pulse injection pressure and timing, swirl ratio, and spray targeting are explored. The investigation showed that an optimized low-pressure early cycle injection combined with a high-pressure near top dead centre (TDC) injection allows combustion phasing to be well controlled while achieving premixed compression ignition (PCI)-like emissions levels. An improved solution was found with near-zero nitric oxides (NO_x) and soot, a net indicated specific fuel consumption (ISFC) of only 175 g/kWh, and a peak pressure rise rate of ~8 bar/deg.
机译:本文将多维计算流体动力学(CFD)代码与详细的化学方法结合使用,即KIVA-CHEMKIN代码,为解决预混合燃烧策略的问题提供了指南,即燃烧定相控制不足,压力上升率过高以及由于早期注射而导致的喷雾壁撞击。多次喷射概念用于控制燃烧定相并降低峰值压力上升率。为了解决喷壁撞击问题,采用了在不同喷射压力下使用两次喷射​​脉冲的自适应喷射策略(AIS)。对于本研究的轻型发动机,所考虑的燃烧过程处于中等负载工况下(标称平均有效压力(IMEP)为5.5 bar,高速时为2000 r / min),以及第一和第二次的影响探索脉冲注入压力和时间,涡流比和喷雾目标。研究表明,优化的低压早期循环喷射与高压近死点(TDC)喷射相结合,可以很好地控制燃烧阶段,同时达到类似预混合压燃(PCI)的排放水平。发现一种改进的解决方案,其中一氧化氮和烟灰接近零,净指示燃料消耗(ISFC)仅175 g / kWh,峰值压力上升率约为8 bar / deg。

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