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The effects of split injection and swirl on a HSDI diesel engine equipped with a common-rail injection system

机译:分体式注射和旋转对配备公共铁路注射系统的HSDI柴油机的影响

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To overcome the trade-off between NO{sub}x and particulate emissions for future diesel vehicles and engines it is necessary to seek methods to lower pollutant emissions. The desired simultaneous improvement in fuel efficiency for future DI (Direct Injection) diesels is also a difficult challenge due to the combustion modifications that will be required to meet the exhaust emission mandates. This study demonstrates the emission reduction capability of split injections, EGR (Exhaust Gas Recirculation), and other parameters on a High Speed Direct Injection (HSDI) diesel engine equipped with a common-rail injection system using an RSM (Response Surface Method) optimization method. The optimizations were conducted at 1757 rev/min, 45% load. Six factors were considered for the optimization, namely the EGR rate, SOI (Start of Injection), intake boost pressure, and injection pressure, the percentage of fuel in the first injection, and the dwell between injections. In addition, the effects of swirl were investigated. The benefit of the combined effects of EGR with supercharging was well realized by the RSM optimization, which resulted in simultaneous reductions in both NO{sub}x and PM emissions, while even improving BSFC (Brake Specific Fuel Consumption). Through the present optimization process, it was shown that RSM optimization is an effective and powerful tool for realizing the full advantages of the combined effects of combustion control techniques. In addition, observation of the optimization process provides a more thorough understanding of HSDI diesel combustion since the observed trends can be explained by monitoring the effects of the operating parameters.
机译:为了克服未来柴油车辆和发动机的{sub} X和微粒排放之间的权衡,有必要寻求降低污染物排放的方法。由于需要满足排气发射授权所需的燃烧修改,因此未来DI(直接喷射)柴油机的所需同时提高燃料效率的提高也是一个困难的挑战。本研究表明,使用RSM(响应面方法)优化方法,分配注射液,EGR(废气再循环)和配备有共轨注射系统的高速直喷(HSDI)柴油发动机的排放减排能力。 。优化在1757 Rev / min,45%负荷进行。考虑了优化的六个因素,即EGR速率,SOI(注射的开始),进气提升压力和注射压力,第一次注射中的燃料百分比,并置于注射之间。此外,研究了漩涡的影响。通过RSM优化,EGR与增压的组合效果的益处通过RSM优化很好地实现,导致甚至改善BSFC(制动器特定燃料消耗)同时降低NO {Sub} X和PM排放。通过目前的优化过程,显示RSM优化是一种有效且强大的工具,用于实现燃烧控制技术的综合影响的完整优势。此外,由于可以通过监测操作参数的效果来解释观察到的趋势,但是对优化过程的观察提供了对HSDI柴油燃烧的更透彻的理解。

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