首页> 外文会议>SAE World Congress and Exhibition >Detection of Fires in the Engine Compartment of Heavy Duty Vehicles, A Theoretical Study
【24h】

Detection of Fires in the Engine Compartment of Heavy Duty Vehicles, A Theoretical Study

机译:检测重型车辆发动机舱中的火灾,理论研究

获取原文

摘要

Fires in the engine compartments of surface and underground non-rail heavy duty vehicles are still highly frequent. Statistics show that most of the reported fires commenced in the engine compartment and that these were not promptly detected by the drivers. Fires which were not detected rapidly, spread oftentimes beyond the firewall of the engine compartment having notorious economical and environmental repercussions; furthermore, endangering the safety of the occupants. Detecting fires in the engine compartments of heavy duty (HD) vehicles with inexpensive and simple automatic detection systems is in general challenging. High air flows and large amounts of suspended pollutants, together with the complicated geometry and wide range of surface temperatures typically occurring during the normal operation of the vehicle, complicate the reliable operation of almost all types of detectors. This work presents a theoretical study assessing the effectiveness of different detection systems in a simulated fire scenario. Results from calculations and Computational Fluid Dynamics (CFD) simulations of a well defined fire in a standardised engine compartment are used to determine the gas temperature and smoke concentration across the compartment and how these are affected by different engine configurations and driving conditions. The effectiveness of different detection systems is studied by means of simulating a fire and analysing predictions measurements of temperatures and smoke concentrations resolved in time and space in the virtual compartment.
机译:表面和地下非轨重型车辆的发动机舱中的火灾仍然高度频繁。统计数据显示,在发动机舱中开始的大多数射击射击,这些火灾在司机上没有及时检测到这些火灾。未迅速检测到的火灾,在发动机舱的防火墙上蔓延,具有臭名昭着的经济和环境影响;此外,危及乘员的安全性。在具有廉价且简单的自动检测系统的重型(HD)车辆的发动机舱中检测发射射击是一般具有挑战性的。高空气流量和大量的悬浮污染物,以及在车辆正常操作期间通常发生的复杂几何形状和宽范围的表面温度,使几乎所有类型的探测器的可靠操作复杂化。这项工作提出了一种评估模拟火灾情景中不同检测系统的有效性的理论研究。由计算和计算流体动力学的结果(CFD)模拟标准化发动机舱中的明确的火灾模拟用于确定整个隔室的气体温度和烟雾浓度以及这些烟雾浓度以及这些烟雾浓度是如何受不同的发动机配置和驾驶条件的影响。通过模拟火灾和分析在虚拟室中的时间和空间中解决的温度和烟雾浓度的预测测量来研究不同检测系统的有效性。

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