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Fuel Consumption Improvement of 2.4L ULPC Diesel Engine by Optimizing the Combustion System; Nozzle, Swirl Ratio and Piston Bowl Geometry

机译:通过优化燃烧系统燃料消耗改进2.4LULPC柴油发动机;喷嘴,旋流比和活塞碗几何形状

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As presented in the previous study [1], a 2.4L ULPC(Ultra Low PM Combustion) diesel engine was achieved through optimal matching with piston bowl geometry and nozzle spray angle that significantly reduce the amount of engine out soot generated in the combustion. This engine complies with US Tier 4 Final regulation without DPF (only DOC) which was developed for off-road applications such as skid-loader, forklift and construction equipment. Improvement in fuel consumption of diesel engine for off-road applications and construction equipment which are operating continuously for a long time at high load conditions will be very important for reducing the operating costs. This paper explains a detailed review of improvement BSFC of 2.4L ULPC diesel engine by optimizing the combustion system with swirl ratio, nozzle flow rate and piston bowl geometry while maintaining non-DPF solution. In this study, three dimensional commercial CFD software (Diesel 3D) was used to compare with the various swirl ratio levels, nozzles with the different nozzle flow rate and piston bowl geometries. The robust optimal design method by DFSS (Design for Six Sigma) used to optimize the piston bowl geometry. In the results of 3-D combustion simulation which was evaluating the each parameter, It shows a higher potential to improve BSFC while maintaining the low level of soot emission. The results of engine bench tests can prove the effect of swirl ratio, nozzle, piston bowl geometry and the results match the simulation results well. Finally, over 6.0% improvement of fuel consumption at the rated power condition which is the main operating condition in the off-road applications has been achieved in the new 2.4L ULPC diesel engine which is applied the optimized combustion system with higher swirl ratio, higher nozzle flow rate and modified piston bowl geometry in compared with the base ULPC diesel engine.
机译:如前一项研究[1]所示,通过与活塞碗几何形状和喷嘴喷射角度的最佳匹配来实现2.4LULPC(超低PM燃烧)柴油发动机,从而显着减少燃烧中产生的发动机烟灰量。此引擎符合美国第4层最终规范,无需DPF(仅DOC),该调节是为越野应用而开发的,如滑块,叉车和施工设备。在高负荷条件下连续运行的越野应用和施工设备的柴油发动机燃料消耗的提高对于降低运营成本非常重要。本文通过在保持非DPF解决方案的同时优化具有旋流比,喷嘴流量和活塞碗几何的燃烧系统,对2.4LULPC柴油发动机改进BSFC的详细审查进行了详细的综述。在本研究中,三维商业CFD软件(柴油3D)用于与各种旋流比水平进行比较,具有不同喷嘴流量和活塞碗几何形状的喷嘴。 DFSS(六西格玛设计)的鲁棒最优设计方法用于优化活塞碗几何形状。在评估每个参数的3-D燃烧模拟的结果中,它显示出改善BSFC的较高潜力,同时保持低水平的烟灰发射。发动机台阶试验的结果可以证明旋流比,喷嘴,活塞碗几何形状和结果匹配的效果良好。最后,燃料消费量的6.0%的改善,在这是在越野应用已经在应用了优化的燃烧系统具有较高的涡流比新2.4L ULPC柴油机取得的主要操作条件的额定功率条件,更高与基础ULPC柴油发动机相比,喷嘴流量和改进的活塞碗几何形状。

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