Analytical investigations on heat transfer in a low heat rejection DI diesel engine

A. Kumar, K. Annamalai, S. Prabhakar, V. N. Banugopan
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引用次数: 4

Abstract

Diesel engines are increasingly becoming important because of their fuel economy and efficiency. Now-a-days, ceramic coating over the cylinder head, valves and the piston top surfaces are provided for thermal insulation. These thermal barrier coatings reduce the heat transfer from the combustion chamber to the cooling jackets and to the atmosphere. This paper presents the investigation of the temperature distribution over the cylinder head, valves and the piston resulting from coating those using Partially Stabilized Zirconia (PSZ) thermal barrier coatings. This analysis is based on the fact that coating thickness affects the heat transfer and temperature distribution in the cylinder head and piston. A 3-D Finite Element Analysis (FEA) using ANSYS is performed to evaluate the temperature distributions over the cylinder head, inlet valve, exhaust valve and the piston. Based on the analysis, it can be concluded that a coating of PSZ over the combustion chamber increases the temperature over the inside the combustion chamber and reduces the heat rejection to the atmosphere.
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低排热直喷柴油机传热特性分析研究
柴油发动机因其燃油经济性和效率而变得越来越重要。如今,陶瓷涂层在缸盖,阀门和活塞顶部表面提供隔热。这些热障涂层减少了从燃烧室到冷却套和大气的热量传递。本文研究了部分稳定氧化锆(PSZ)热障涂层在气缸盖、阀门和活塞上的温度分布。这种分析是基于涂层厚度影响缸盖和活塞的传热和温度分布的事实。利用ANSYS进行了三维有限元分析(FEA),对气缸盖、进气阀、排气阀和活塞的温度分布进行了评估。通过分析可以得出结论,在燃烧室上涂覆PSZ涂层可以提高燃烧室内部的温度,减少对大气的散热。
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