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A Practical Application to Reduce Exhausts Emissions on a Two-Stroke Engine With a Tuned Exhaust Pipe

机译:用调谐排气管减少两冲程发动机排放排放的实际应用

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Earlier papers show theoretical design, and also including experimental results from a prototype engine, which describe a tuned exhaust system that can reduce both exhaust emissions and noise, and at the same time increase engine power output on two-stroke engines. This paper shows how this design concept has been applied to the engine used for the low noise Husqvarna H356 Backpack leaf blower, which has been in production since 2005. This includes a description of the engine layout, with similarities and differences compared to a standard two-stroke engine. Experimental test results are presented for power output, fuel consumption, and exhaust emissions, which are shown to be better than previously presented for a prototype engine with this technology. This makes it possible to comply with emission regulations without catalyst exhaust after-treatment. In a second step, test results and engine layouts from two modified and further optimized engines are presented and explained, to showcase the potential for even more improvement. The first of these engines has a minor change in the dimensions of the exhaust system, which is shown to have a profound impact on the exhaust emissions, lowering the HC emissions by 20%. The reason for this is explained by looking at how the tuning pressure wave at the exhaust port has changed due to this modification of the exhaust system. The second engine is a more complete redesign, with only the bore, stroke and crankcase identical with the standard engine. The cylinder port layout and exhaust pipe design are modified with a focus on increasing the power output, without at the same time deteriorate the HC emissions. The result is an engine with the same emission level as the standard engine but with a BMEP level more than 25% higher.
机译:早期的论文显示理论设计,并包括原型发动机的实验结果,它描述了可以减少排气排放和噪声的调谐排气系统,同时增加两个行程发动机上的发动机功率输出。本文展示了这种设计概念已经应用于用于低噪声Husqvarna H356背包叶片鼓风机的发动机,该概念自2005年以来一直在生产中。这包括发动机布局的描述,与标准两者相比具有相似性和差异 - 跳水引擎。提出了实验测试结果,供电,燃料消耗和废气排放,其被证明比以前呈现出具有这种技术的原型发动机更好。这使得可以遵守没有催化剂废气后处理的排放法规。在第二步中,提出和解释了来自两个改进的和进一步优化的发动机的测试结果和发动机布局,以展示更多改进的潜力。这些发动机中的第一个具有缩小的排气系统的尺寸,显示为对废气排放产生深远的影响,将HC排放降低20%。通过研究由于该排气系统的改变而改变排气口处的调谐压力的调谐压力是如何解释的。第二引擎是更完整的重新设计,只有孔,行程和曲轴箱与标准发动机相同。通过焦点对增加功率输出的焦点来修改气缸端口布局和排气管设计,而无需同时劣化HC排放。结果是具有与标准发动机相同的发射水平的发动机,但BMEP级别高于25%。

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