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An Investigation of Radiation Heat Transfer in a Light-Duty Diesel Engine

机译:轻型柴油机辐射换热研究

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In the last two decades engine research has been mainly focused on reducing pollutant emissions. This fact together with growing awareness about the impacts of climate change are leading to an increase in the importance of thermal efficiency over other criteria in the design of internal combustion engines (ICE). In this framework, the heat transfer to the combustion chamber walls can be considered as one of the main sources of indicated efficiency diminution. In particular, in modern direct-injection diesel engines, the radiation emission from soot particles can constitute a significant component of the efficiency losses. Thus, the main of objective of the current research was to evaluate the amount of energy lost to soot radiation relative to the input fuel chemical energy during the combustion event under several representative engine loads and speeds. Moreover, the current research characterized the impact of different engine operating conditions on radiation heat transfer. For this purpose, a combination of theoretical and experimental tools were used. In particular, soot radiation was quantified with a sensor that uses two-color thermometry along with its corresponding simplified radiation model. Experiments were conducted using a 4-cylinder direct-injection light-duty diesel engine fully instrumented with thermocouples. The goal was to calculate the energy balance of the input fuel chemical energy. Results provide a characterization of radiation heat transfer for different engine loads and speeds as well as radiation trends for different engine operating conditions.
机译:在过去的二十年中,发动机研究主要集中在减少污染物排放上。这一事实以及人们对气候变化影响的认识不断提高,导致热效率的重要性比内燃机(ICE)设计中的其他标准更高。在这种框架下,传给燃烧室壁的热量可以认为是效率降低的主要来源之一。特别地,在现代的直接喷射柴油发动机中,来自烟灰颗粒的辐射发射可构成效率损失的重要组成部分。因此,当前研究的主要目的是在几种代表性的发动机负载和转速下,评估燃烧事件期间烟灰辐射相对于输入燃料化学能的能量损失量。此外,当前的研究表征了不同发动机工况对辐射传热的影响。为此,使用了理论和实验工具的组合。特别是,使用双色测温法及其相应的简化辐射模型的传感器对烟尘辐射进行了量化。实验是使用完全装有热电偶的4缸直喷轻型柴油发动机进行的。目的是计算输入燃料化学能的能量平衡。结果提供了针对不同发动机负载和转速的辐射热传递的特征,以及针对不同发动机工况的辐射趋势的特征。

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