首页> 外文会议>SAE World Congress >Direct Measurement of EGR Cooler Deposit Thermal Properties for Improved Understanding of Cooler Fouling
【24h】

Direct Measurement of EGR Cooler Deposit Thermal Properties for Improved Understanding of Cooler Fouling

机译:直接测量EGR冷却器沉积热性能,以提高对凉爽污垢的理解

获取原文

摘要

Exhaust gas recirculation (EGR) cooler fouling has become a significant issue for compliance with NO_X emissions standards. This paper reports results of a study of fundamental aspects of EGR cooler fouling. An apparatus and procedure were developed to allow surrogate EGR cooler tubes to be exposed to diesel engine exhaust under controlled conditions. The resulting fouled tubes were removed and analyzed. Volatile and non-volatile deposit mass was measured for each tube. Thermal diffusivity of the deposited soot cake was measured by milling a window into the tube and using the Xenon flash lamp method. The heat capacity of the deposit was measured at temperatures up to 430°C and was slightly higher than graphite, presumably due to the presence of hydrocarbons. These measurements were combined to allow calculation of the deposit thermal conductivity, which was determined to be 0.041 W/mK, only ~1.5 times that of air and much lower than the 304 stainless steel tube (14.7 W/mK). The main determinant of the deposit thermal conductivity is density, which was measured to be just 2% that of the density of the primary soot particles (or 98% porous). The deposit layer thermal resistance was calculated and compared with estimates of the thermal resistance calculated from gas temperature data during the experiment. The deposit properties were also used to further analyze the temperature data collected during the experiment.
机译:废气再循环(EGR)冷却器结垢已成为符合NO_X排放标准的重要问题。本文报告了EGR冷却器污垢的基本方面的研究结果。开发了一种装置和程序,以允许替代EGR冷却器管暴露于受控条件下的柴油发动机排气。除去并分析所得的污垢管。针对每个管测量挥发性和非挥发性沉积物。通过将窗口研磨到管中并使用氙闪光灯法测量沉积的烟灰滤饼的热扩散率。在高达430℃的温度下测量沉积物的热量,并且略高于石墨,可能是由于碳氢化合物的存在。组合这些测量以允许计算沉积导热率,测定为0.041W / mK,仅〜1.5倍的空气,远低于304不锈钢管(14.7W / mK)。沉积热导率的主要决定簇是密度,测量为伯烟灰颗粒的密度(或98%多孔)的密度的2%。计算沉积层热阻,并与在实验期间从气体温度数据计算的热阻的估计进行比较。沉积性能也用于进一步分析在实验期间收集的温度数据。

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