Temperature field simulation of gob influenced by atmospheric pressure

被引:7
|
作者
Wang Gang [1 ,2 ]
Luo Hai-zhu [2 ]
Liang Yun-tao [2 ]
Wang Ji-ren [1 ]
机构
[1] Liaoning Tech Univ, Coll Safety Sci & Technol, Fuxin 123000, Peoples R China
[2] Shenyang Res Inst China, State Key Lab Coal Safety Technol, Technol & Engn Grp, Shenyang 110016, Peoples R China
基金
中国国家自然科学基金;
关键词
gob; atmospheric pressure; numerical simulation; temperature field; SPONTANEOUS COMBUSTION; COAL; PREDICTION;
D O I
10.1007/s11771-015-2985-9
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The current temperature field model of mine gob does not take the boundary conditions of the atmospheric pressure into account, while the actual atmospheric pressure is influenced by weather, so as to produce differences between ventilation negative pressure of the working face and the negative pressure of gas drainage in gob, thus interfering the calculated results of gob temperature field. According to the characteristics of the actual air flow and temperature change in gob, a two-dimensional temperature field model of the gob was built, and the relational model between the air pressure of intake and outlet of the gob and the atmospheric pressure was established, which was introduced into the boundary conditions of temperature field to conduct calculation. By means of analysis on the simulation example, and comparison with the traditional model, the results indicate that atmospheric pressure change had notable impact on the distribution of gob temperature field. The laboratory test system of gob temperature field was constructed, and the relative error between simulated and measured value was no greater than 9.6%, which verified the effectiveness of the proposed model. This work offers theoretical basis for accurate calculation of temperature and prediction of ignition source in mine gob, and has important implications on preventing spontaneous combustion of coal.
引用
收藏
页码:4366 / 4371
页数:6
相关论文
共 50 条
  • [31] Optimization of the atmospheric temperature field measurements
    Rosa, B
    Bajer, K
    Haman, KE
    Szoplik, T
    OPTICS IN ATMOSPHERIC PROPAGATION AND ADAPTIVE SYSTEMS VII, 2004, 5572 : 355 - 365
  • [32] Simulation of scenario earthquake influenced field by using GIS
    左惠强
    谢礼立
    Acta Seismologica Sinica(English Edition), 1999, (04) : 475 - 480
  • [33] Simulation Research on the Influences of Temperature on Streamer Discharge of the Needle Plate Air Gap at Atmospheric Pressure
    Zhang Z.
    Song H.
    Dai J.
    Luo L.
    Sheng G.
    Jiang X.
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2021, 41 (08): : 2929 - 2938
  • [34] Research on Pressure Control for Cascaded Atmospheric Pressure Simulation System
    Liao, Lihui
    Li, Baoren
    Du, Jingmin
    Tan, Lu
    Yang, Gang
    Du, Linglong
    2016 IEEE/CSAA INTERNATIONAL CONFERENCE ON AIRCRAFT UTILITY SYSTEMS (AUS), 2016, : 1224 - 1231
  • [35] Test verifies and simulation on welding temperature field of steel plate for pressure vessel
    Chi, Luxin
    Ma, Yonglin
    Xing, Shuqing
    Chen, Furong
    Hanjie Xuebao/Transactions of the China Welding Institution, 2012, 33 (05): : 61 - 64
  • [36] Intraocular pressure is influenced by ambient temperature in glaucoma patients
    Krebs, Johann Ferdinand
    Hosari, Sami
    Lammer, Robert
    Mardin, Christian
    Hohberger, Bettina
    ACTA OPHTHALMOLOGICA, 2019, 97
  • [37] GELATINIZATION TEMPERATURE OF STARCH, AS INFLUENCED BY HIGH-PRESSURE
    THEVELEIN, JM
    VANASSCHE, JA
    HEREMANS, K
    GERLSMA, SY
    CARBOHYDRATE RESEARCH, 1981, 93 (02) : 304 - 307
  • [38] Field simulation of in situ water content and temperature changes due to ground-atmospheric interactions
    Cui, YJ
    Lu, YF
    Delage, P
    Riffard, M
    GEOTECHNIQUE, 2005, 55 (07): : 557 - 567
  • [39] Diagnostic of Plasma Produced by a Spark Plug at Atmospheric Pressure: Reduced Electric Field and Vibrational Temperature
    Hnatiuc, B.
    Astanei, D.
    Pellerin, S.
    Cerqueira, N.
    Hnatiuc, M.
    CONTRIBUTIONS TO PLASMA PHYSICS, 2014, 54 (08) : 712 - 723
  • [40] Modeling and Simulation of Atmospheric Synthetic Wind Field in Flight Simulation
    Cui, Weiting
    Lei, Xiaoyong
    PROCEEDINGS OF 2015 IEEE 5TH INTERNATIONAL CONFERENCE ON ELECTRONICS INFORMATION AND EMERGENCY COMMUNICATION, 2015, : 357 - 363