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DESIGN AND EXPERIMENTAL CONSTRUCTION OF A SIX-STROKE ENGINE WITH WATER INJECTION

机译:注水六冲程发动机的设计与实验建造

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Internal Combustion Engines can be found under the hoods of 98% of the estimated 1.2 billion cars in the world. The quest for engines with better power and greater fuel efficiency has been persistent for a great number of years. New ideas and technologies have been incorporated into the current system in order to reduce the consumption of fuel. A six-stroke I. C. engine will radically improve on the concept of a four-stroke I. C. Engine. It will increase the fuel efficiency and improve the heat dissipation of the engine, thereby eliminating the need for a radiator. The six-stroke engine concept will add two strokes of water to the original four-stroke cycle. The fifth stroke in the cycle will act as an auxiliary power stroke. This type of engine will have positive implications on the environment as it will reduce emissions. The paper gives a detailed description of the design changes that need to be incorporated for the engine to run on a six-stroke cycle. It also gives an insight into the various thermodynamic process changes that occur on converting a four-stroke engine into a six-stroke engine along with the various parameters that have to be taken into consideration. The Crower Six Stroke engine is the basis for this design idea.
机译:全世界估计有12亿辆汽车中有98%都装有内燃机。对具有更好动力和更高燃油效率的发动机的追求已经持续了很多年。为了减少燃料消耗,新的思想和技术已经被并入当前的系统中。六冲程I.C.发动机将在四冲程I.C.发动机的概念上进行根本改进。它将提高燃油效率并改善发动机的散热,从而消除了对散热器的需求。六冲程发动机概念将为原始的四冲程循环增加两冲程水。循环中的第五个冲程将作为辅助动力冲程。这种类型的发动机将减少排放,因此会对环境产生积极影响。本文详细介绍了设计变更,为了使发动机在六冲程循环中运行,需要进行设计变更。它还可以洞悉将四冲程发动机转换为六冲程发动机时发生的各种热力学过程变化,以及必须考虑的各种参数。 Crower六冲程发动机是该设计理念的基础。

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