首页> 外文期刊>Energy >Experimental evaluation of local instantaneous heat transfer characteristics in the combustion chamber of air-cooled direct injection diesel engine
【24h】

Experimental evaluation of local instantaneous heat transfer characteristics in the combustion chamber of air-cooled direct injection diesel engine

机译:风冷直喷柴油机燃烧室局部瞬时传热特性的实验评估

获取原文
获取原文并翻译 | 示例
           

摘要

An experimental analysis is conducted investigating the differences between the variations of overall and local instantaneous heat transfer coefficients, during the engine cycle, in the combustion chamber walls of a direct injection (DI), air-cooled diesel engine located at the authors' laboratory. For this purpose, a novel experimental installation is developed, which separates the engine transient temperature signals into two parts, namely the long- and the short-term response ones, processed in two independent data acquisition systems. Moreover, a new pre-amplification unit for fast response thermocouples, appropriate heat flux sensors and an object-oriented control code for fast data acquisition have been designed and applied. Experimentally obtained cylinder pressure diagrams are used as a basis for the calculation of the overall heat transfer coefficients, whereas one-dimensional heat conduction theory with Fourier analysis techniques, combined with an iterative procedure between calculated and measured temperature data, are implemented in order to calculate the instantaneous local heat transfer coefficients in the engine cylinder. Analysis of the experimental results reveals interesting aspects of transient engine heat transfer. Significant differences are disclosed between the overall and local heat transfer coefficient variations, with the importance of the latter one on engine design being emphasized. The local heat transfer coefficient on the cylinder head is quantified based on the experimental data. The effect of engine speed and load as well as of the air swirling motion on the heat transfer variations are presented. From the analysis results it is concluded that the instantaneous heat transfer variation is non-uniform, unlike its values calculated from standard correlations that assume spatial uniformity, noting that such information, especially for air-cooled diesel engines, seems to be very scarce in the open literature.
机译:进行了一项实验分析,研究了在发动机循环期间位于作者实验室的直喷式(DI)空冷柴油机的燃烧室壁中总体和局部瞬时传热系数的变化之间的差异。为此,开发了一种新颖的实验装置,该装置将发动机瞬态温度信号分为两个部分,即长期响应信号和短期响应信号,并在两个独立的数据采集系统中进行处理。此外,已经设计并应用了用于快速响应热电偶的新型前置放大单元,合适的热通量传感器以及用于快速数据采集的面向对象的控制代码。实验获得的气缸压力图用作计算总传热系数的基础,而采用傅立叶分析技术的一维热传导理论,结合计算和测得的温度数据之间的迭代过程,进行计算发动机气缸中的瞬时局部传热系数。对实验结果的分析揭示了瞬态发动机传热的有趣方面。揭示了整体传热系数变化与局部传热系数变化之间的显着差异,其中后者在发动机设计上的重要性得到了强调。根据实验数据对气缸盖上的局部传热系数进行量化。提出了发动机转速和负载以及空气涡旋运动对传热变化的影响。从分析结果可以得出结论,瞬时传热变化是不均匀的,不同于根据假定空间均匀性的标准相关性计算得到的瞬时值,并指出这种信息,特别是对于风冷柴油机而言,似乎非常稀缺。开放文学。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号