• Chinese Core Periodicals
  • Chinese Core Journals of Science and Technology
  • RCCSE Chinese Authoritative Academic Journals
CHEN Qinghua, CHEN Wentao, QIN Ruxiang, GAO Wei, XU Tongzhen, LIU Yarui. Thermal Air Environment Simulation System for Spontaneous Combustion of Coal[J]. Safety in Coal Mines, 2020, 51(10): 253-256.
Citation: CHEN Qinghua, CHEN Wentao, QIN Ruxiang, GAO Wei, XU Tongzhen, LIU Yarui. Thermal Air Environment Simulation System for Spontaneous Combustion of Coal[J]. Safety in Coal Mines, 2020, 51(10): 253-256.

Thermal Air Environment Simulation System for Spontaneous Combustion of Coal

More Information
  • Published Date: October 19, 2020
  • The air heating technology is applied to the field of environmental simulation to simulate the oxidation of coal when the external environment temperature is different and the loose coal is piled up. The high temperature air heater was developed, and the actual stacking environment of coal was simulated by sending the air heated to different temperatures by high temperature oil bath to the environmental simulation box. The working process and functions of the heater are described in detail, the specific size of the spiral coil used in the heater is calculated, and the heating efficiency of the equipment is determined through practical tests. The results show that the actual coil number is 3 and the length is 2.198 1 m when the vertical spiral coil heat exchanger is selected. The air in the coil is heated by high temperature oil bath. The temperature control accuracy of the heater is ±1 ℃. The actual air heating efficiency is relatively high, and increases with the increase of flow rate.
  • [1]
    金永飞,郭军,文虎,等.煤自燃高温贫氧氧化燃烧特性参数的实验研究[J].煤炭学报,2015,40(3):596.
    [2]
    Yutao Z, Yurui L, Xueqiang S, et al. Risk evaluation of coal spontaneous combustion on the basis of auto-ignition temperature[J]. Fuel, 2018, 233:68-76.
    [3]
    曹春华.碱回收炉空气加热器冷凝水系统[J].中国造纸,2015,34(1):44-48.
    [4]
    Sompol Skullong,Pongjet Promvonge. Experimental Investigation on Turbulent Convection in Solar Air Heater Channel Fitted with Delta Winglet Vortex Generator[J].中国化学工程学报:英文版,2014(1):1.
    [5]
    张思平,谢江辉,张德满,等.基于CFD的压缩空气加热器改进设计[J].舰船科学技术,2013,35(3):78.
    [6]
    孙佰仲,刘洪鹏,刘秀,等.电磁感应高温空气加热特性试验研究[J].中国电机工程学报,2009,29(20):30-34.
    [7]
    聂欣,周俊虎,吕明,等.新型高温空气加热器的试验研究[J].热力发电,2008,37(8):9-12.
    [8]
    Egorov M Y. Methods of Heat-Exchange Intensification in NPP Equipment[J]. Atomic Energy, 2018, 124(6):403-407.
    [9]
    Aytun Erek, Mehmet Akif Ezan. Experimental and numerical study on charging process of an ice-on-coil thermal energy storage system[J]. International Journal of Energy Research, 2007, 31(2): 158-176.
    [10]
    孙巍,成庆林,王沛迪,等.大型原油浮顶储罐蒸汽盘管加热过程数值模拟[J].化学工程,2016,44(7):19-23.
    [11]
    K Patil,周体伟.螺旋盘管换热器的设计[J].化工设备与管道,1984(1):11-14.
    [12]
    曲明璐,樊亚男,李天瑞,等.复叠式空气源热泵双螺旋盘管蓄热器蓄放热特性实验研究[J].制冷学报,2017,38(3):23-29.
    [13]
    周静,初广文,邹海魁,等.新型螺旋盘管反应器硝化工艺研究[J].高校化学工程学报,2013(1):65-70.
    [14]
    Aria Hatef, Akhavan-Behabadi Mohammad A,Farzin M Shemirani.Transfer and Pressure Drop of HFC-134a inside a Vertical Helically Coiled Tube[J]. Heat Transfer Engineering, 2012, 33(2): 79-87.
    [15]
    王发成,张俊智,王丽芳,等.车载动力电池组用空气电加热器设计[J].电源技术,2013,37(7):1184.
    [16]
    杨柳,康凯,张作宾.WHY—Ⅱ型精密恒温油浴装置的研制[J].仪表技术与传感器,1993(2):19-20.
  • Related Articles

    [1]ZHENG Xuezhao, FAN Yongchao, YAN Ruijin, SUN Ziyu, HUANG Yuan. Study on gas seepage characteristics of loose coal[J]. Safety in Coal Mines, 2024, 55(11): 101-107. DOI: 10.13347/j.cnki.mkaq.20231367
    [2]ZHANG Duo, DU Yang, YANG Xueshan, WEN Hu, WANG Zhenping, REN Xiaodong, JIA Yongxiao. The influence of gas injection pressure and osmotic pressure on the permeability of loose coal body at different temperature conditions[J]. Safety in Coal Mines, 2024, 55(10): 53-63. DOI: 10.13347/j.cnki.mkaq.20231018
    [3]DENG Jun, QU Gaoyang, REN Shuaijing, WANG Caiping, ZHAO Xiaoyong. Experimental study on optimization of low frequency acoustic transmission frequency in loose coal[J]. Safety in Coal Mines, 2022, 53(1): 15-23.
    [4]WANG Wenqiang, YANG Xiaobin, LIU Wei, GUO Dandan, HE Chao. Particle Size Effect of Thermal Conductivity and Diffusivity of Loose Coal[J]. Safety in Coal Mines, 2017, 48(3): 28-31.
    [5]XU Yuequn, WU Jinxiang. Numerical Analysis of Air-breathing Law in High Temperature Loose Coal Containing Heat Source[J]. Safety in Coal Mines, 2016, 47(5): 22-25,29.
    [6]QI Fuzhou, WU Yazhou. Supporting Technology and Process for Loose Coal Roadway with Broken Roof[J]. Safety in Coal Mines, 2015, 46(3): 65-67.
    [7]WEN Hu, ZHOU Yang, ZHAI Xiao-wei, HE Long-wei, XIA Chuan-you. Experimental Study of Coal Oxidation Process in Constant Temperature Condition[J]. Safety in Coal Mines, 2013, 44(10): 1-3.
    [8]XU Yong-liang, WANG Lan-yun, CHU Ting-xiang, YU Ming-gao. The Effect of Nitrogen Injection on Gas Distribution in the Loose Coal of Goaf[J]. Safety in Coal Mines, 2013, 44(5): 22-25.
    [9]WANG Lan-yun, XU Yong-liang, JI Yu-peng. Theoretical Analysis of the Heat and Mass Transfer Coupling Impacting on the Low-temperature Oxidation of Loose Coal[J]. Safety in Coal Mines, 2012, 43(6): 132-136.
    [10]LI Shou-zhen. The Practice of Shaft "Four Step" Uncovering Coal Method in Loose Thick Coal Seam[J]. Safety in Coal Mines, 2012, 43(6): 108-110.

Catalog

    Article views (27) PDF downloads (0) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return