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Single-cylinder 125 cc Stepped-piston Engine for Mobility and Portable Power Generation Applications

机译:适用于机动性和便携式发电应用的单缸125 cc步进活塞式发动机

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Two-stroke engines are far simpler than four-stroke engines from a physical perspective. For a given brake output, two-stroke engines are lighter, easier to work on, and provide higher power-to-weight ratio than four-stroke engines, making them suitable for small platform applications. However, conventional two-stroke engines have a reputation for generating smoke and unburned fuel, meaning they may not meet many emissions regulations, now enforced around the world. Thus, for many decades two-stroke engines have not been not favored, giving way to four-stroke engines for dominant applications, especially for mobile power-generation purposes. In the quest to improve the potential of such an engine, a group of researchers from the Automotive Development Centre (ADC), Universiti Teknologi Malaysia (UTM), has developed a 125 cc, air-cooled stepped-piston engine to demonstrate the higher power-to-weight ratio feature, apart from overcoming emission reduction. The engine is designed to mitigate the problem of mixture short circuiting, which is the major hindrance to combustion efficiency. To this end, they have incorporated a three-port stratification strategy into the engine. This paper provides an overview related to the earlier work done to integrate the necessary features and highlights some of the performance features of this unique engine design.
机译:从物理角度来看,二冲程发动机比四冲程发动机简单得多。对于给定的制动输出,与四冲程发动机相比,二冲程发动机更轻巧,更易于操作并且提供更高的功率重量比,从而使其适合于小型平台应用。但是,传统的二冲程发动机以产生烟雾和未燃烧的燃料而著称,这意味着它们可能不符合目前在世界范围内执行的许多排放法规。因此,几十年来,二冲程发动机并没有受到人们的青睐,而让四冲程发动机用于主要应用,尤其是用于移动发电的应用。为了提高这种发动机的潜力,来自马来西亚Teknologi大学(UTM)汽车开发中心(ADC)的一组研究人员开发了125 cc的风冷步进活塞式发动机,以展示更高的功率。重量比功能,除了克服了减排。发动机的设计旨在减轻混合气短路的问题,这是燃烧效率的主要障碍。为此,他们将三端口分层策略纳入了引擎。本文提供了与早期工作相关的概述,以完成必要功能的集成,并重点介绍了这种独特发动机设计的一些性能特征。

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