Zheng Yi, Li Ying, Thiruvengadam Magesh, Lan Hai, Tien Jerry C
Missouri University of Science and Technology, Rolla, MO USA.
Clean Air Power Inc., Poway, CA 92064 USA.
Int J Coal Sci Technol. 2017;4(3):234-244. doi: 10.1007/s40789-017-0179-9. Epub 2017 Aug 3.
Three-dimensional simulations of diesel particulate matter (DPM) distribution inside a single straight entry for the Load-Haul-Dump loader (LHD)-truck loading and truck hauling operations were conducted by using ANSYS FLUENT computational fluid dynamics software. The loading operation was performed for a fixed period of 3 min. The dynamic mesh technique in FLUENT was used to study the impact of truck motion on DPM distribution. The resultant DPM distributions are presented for the cases when the truck were driving upstream and downstream of the loading face. Interesting phenomena were revealed in the study including the piston effect, layering of DPM in the roof region, and backflow of diesel exhaust against ventilation. The results from the simulation can be used to determine if the areas inside the face area and straight entry exceed the current U.S. regulatory requirement for DPM concentration (>160 µg/m). This research can guide the selection of DPM reduction strategies and improve the working practices for the underground miners.
利用ANSYS FLUENT计算流体动力学软件,对铲运机-卡车装载和卡车运输作业中单个直巷内柴油颗粒物(DPM)的分布进行了三维模拟。装载作业持续固定的3分钟。使用FLUENT中的动态网格技术研究卡车运动对DPM分布的影响。给出了卡车在装载面上下游行驶时DPM的分布情况。该研究揭示了一些有趣的现象,包括活塞效应、顶板区域DPM分层以及柴油机废气逆流对抗通风。模拟结果可用于确定掌子面区域和直巷内的区域是否超过美国目前对DPM浓度的监管要求(>160μg/m)。这项研究可以指导DPM减排策略的选择,并改善地下矿工的工作方式。