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Survey of greener ignition and combustion systems for internal combustion engines

机译:内燃机的绿色点火和燃烧系统调查

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The spark and compression ignition principles of, petrol and diesel internal combustion engines (ICEs) have, not advanced for a century. These do not lead to complete, combustion and hence result in high exhaust emission and, low energy efficiency. This paper presents a comprehensive survey on the attempts and developments of greener ignition, and combustion systems for ICEs and points out that, homogeneous charge microwave ignition (HCMI) holds the, key to a perfect solution. Increasing the ignition volume has, become a trend in research for high-performance, lean-burn and low-emission petrol engines. It started with increasing, ignition points by adopting multi-point spark and lasers., The ignition volume is future increased by high energy and, long endurance ignition as method of zone-based ignition., Production of transient plasma in ignition stage is the key point because combustion performance and flame front, speed is related to volume of transient plasma. But the, volume of ignition is still limited for high ignition energy, requirement. The volume-based ignition methods, like, HCMI, with bigger ignition volume which leads to better, efficiency and low emission are assessed and compared., Many tests on physical engines have proved that HCMI, offers significant performance, but the problem lies in a, production-oriented design. Virtual prototyping through, Computer-Automated Design would help in this regard and, could lead to novel processes for Industry 4.0.
机译:汽油和柴油内燃发动机(ICE)的火花点火和压缩点火原理尚未发展一个世纪。这些不会导致完全燃烧,因此导致高的废气排放和低的能源效率。本文对ICE的绿色点火和燃烧系统的尝试和发展进行了全面的调查,并指出,均匀电荷微波点火(HCMI)是实现完美解决方案的关键。增大点火量已经成为高性能,稀薄燃烧和低排放汽油发动机的研究趋势。它首先通过采用多点火花和激光来增加点火点。随着高能量和长寿命点火作为基于区域点火的方法,未来点火量将不断增加。在点火阶段生产瞬态等离子体是关键因为燃烧性能和火焰前沿,速度与瞬态等离子体的体积有关。但是,对于高点火能量的要求,点火量仍然受到限制。对基于体积的点火方法(例如HCMI)进行了评估并进行了比较,该方法具有较大的点火体积,从而导致更好,更高的效率和更低的排放。许多对物理发动机的测试证明HCMI具有显着的性能,但问题在于,以生产为导向的设计。通过计算机自动化设计进行虚拟原型设计将在这方面有所帮助,并且可能会为工业4.0带来新颖的流程。

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