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Performance of a low heat rejection diesel engine with air gap insulated piston

机译:带气隙绝缘活塞的低散热柴油发动机的性能

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摘要

A threaded air gap insulated piston provided effective insulation without causing sealing problems. The performance of the diesel engine with the air gap insulated piston was obtained with different piston crown materials, at differing magnitudesof air gap with varying injection timings. The engine using Nimonic for the piston crown with an air gap of 3 mm at an injection timing of 29.5° bTDC reduced the BSFC by 12 percent at part loads and 4 percent at full load. The performance in terms ofP-250L?and T-θ was predicted employing a zero dimensional multizone combustion model, and the model results have been validated with measured pressures and the exhaust gas temperatures. More appropriate piston surface temperatures were employed in Annand's equation to improve the computer predictions using finite element modeling of the piston. The measured temperatures of air in the air gap using an L-link mechanism provided excellent validation for the finite element prediction of isotherms in the piston.
机译:螺纹气隙绝缘活塞提供了有效的绝缘,而不会引起密封问题。使用不同的活塞冠材料,在不同大小的气隙和不同的喷射时间下,获得了具有气隙绝缘活塞的柴油发动机的性能。在29.5° bTDC的喷射正时,使用Nimonic作为活塞冠的发动机,气隙为3 mm,在部分负载下将BSFC降低了12%,在满负荷时降低了4%。采用零维多区燃烧模型对P-250L?和T-θ性能进行了预测,并利用实测压力和废气温度对模型结果进行了验证。在安南德方程中采用了更合适的活塞表面温度,以改进使用活塞有限元建模的计算机预测。使用L型连杆机构测量气隙中的空气温度,为活塞中等温线的有限元预测提供了很好的验证。

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