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Thermo-swing insulation to reduce heat loss from the combustion chamber wall of a diesel engine

机译:热摆动绝缘以减少柴油发动机燃烧室壁的热量损失

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摘要

Cooling heat loss is one of the most dominant losses among the various engine losses to be reduced. Although many attempts to reduce it by insulating the combustion chamber wall have been carried out, most of them have not been successful. Charge air heating by the constantly high temperature insulating wall is a significant issue, because it deteriorates charging efficiency, increases the emissions of soot and NOx in diesel engines, and promotes the knock occurrence tendency in gasoline engines. A new concept heat insulation methodology which can reduce cooling heat loss without heating the charging air has been developed. Surface temperature of insulation coating on the combustion chamber wall changes rapidly, according to the quickly changing in-cylinder gas temperature in each engine stroke. During the compression and expansion stroke, the surface temperature of the insulation coating goes up rapidly, and consequently, the heat transfer becomes lower by the reduced temperature difference between the surface and the gas. During the intake stroke, the surface temperature goes down rapidly, and it prevents intake air heating from the wall. To realize the above-mentioned functionality, a thin coating layer with low thermal conductivity and low heat capacity was developed. It was applied on the pistons of diesel engines, and showed improvement in thermal efficiency. It also showed a reduction of unburnt fuel emission in low temperature engine starting condition. The energy balance analysis showed reduction of cooling heat loss and, on the contrary, increase in the brake power and the exhaust loss.
机译:冷热损失是要减少的各种发动机损耗中最大的损失之一。虽然已经进行了许多尝试通过绝缘燃烧室墙壁来减少它,但大多数都没有成功。通过不断高温绝缘墙加热的空气加热是一个重要的问题,因为它会降低充电效率,增加柴油发动机中烟灰和NOx的排放,并促进汽油发动机的爆震发生趋势。已经开发出一种新的概念隔热方法,其可以减少冷热损失而不加热充电空气。根据每个发动机行程中的圆柱体气温的快速变化,燃烧室壁上绝缘涂层的表面温度迅速变化。在压缩和膨胀冲程期间,绝缘涂层的表面温度迅速上升,因此,通过表面和气体之间的温差降低,传热变低。在进气冲程期间,表面温度迅速下降,并且它防止从壁上加热。为了实现上述功能,开发了具有低导热率和低热容量的薄涂层。它涂在柴油发动机的活塞上,并显示出热效率的提高。它还表明在低温发动机起动条件下减少了UNBurnt燃料发射。能量平衡分析显示冷却热量损失的降低,相反,制动功率和排气损失增加。

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