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A New Piston Insulation Concept for Heavy-Duty Diesel Engines to Reduce Heat Loss from the Wall

机译:一种新的活塞绝缘概念,为重型柴油发动机减少墙壁的热量损失

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To reduce heat transfer between hot gas and cavity wall, thin Zirconia (ZrO_2) layer (0.5mm) on the cavity surface of a forged steel piston was firstly formed by thermal spray coating aiming higher surface temperature swing precisely synchronized with flame temperature near the wall resulting in the reduction of temperature difference. However, no apparent difference in the heat loss was analyzed. To find out the reason why the heat loss was not so improved, direct observation of flame impingement to the cavity wall was carried out with the top view visualization technique, for which one of the exhaust valves was modified to a sapphire window. Local flame behavior very close to the wall was compared by macrophotography. Numerical analysis by utilizing a three-dimensional simulation was also carried out to investigate the effect of several parameters on the heat transfer coefficient. From the observation of wall impinged flame, it was revealed that a kind of thermal boundary layer with Zirconia coating was thinner than the baseline, which could be resulted in the increase in heat transfer coefficient. Furthermore, the numerical simulation results suggested that higher wall surface temperature swing with Zirconia coating is not the main cause of thinner boundary layer, but surface roughness and/or porous structure is. To confirm the hypothesis, new pistons with different insulating structures were then experimented. Even though the heat loss was not so improved because of the limited area of insulation, the potential for BTE improvement was confirmed.
机译:为了减少热气和腔壁之间的热传递,首先通过热喷涂涂层在墙壁附近的火焰温度方面的热喷涂涂层首先形成锻造钢活塞的腔表面上的薄氧化锆(ZrO_2)层(0.5mm)。导致温差的降低。然而,分析了热量损失的明显差异。为了找出不那么改善的热量损失的原因,用顶视图可视化技术进行对腔壁的火焰冲击的直接观察,其中一个排气阀被修改到蓝宝石窗口。通过宏观摄影比较了近距离墙壁的局部火焰行为。还进行了通过利用三维模拟进行数值分析,以研究几个参数对传热系数的影响。从撞击火焰的观察开始,揭示了一种具有氧化锆涂层的热边界层比基线更薄,这可能导致传热系数的增加。此外,数值模拟结果表明,含氧化锆涂层的较高壁表面温度摆动不是薄边界层的主要原因,但表面粗糙度和/或多孔结构是。为了确认假设,然后尝试具有不同绝缘结构的新活塞。尽管由于绝缘区域有限而没有如此改善,但确认了BTE改善的可能性。

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