Mathematical model and methods for solving heat-transfer problem during underground coal gasification

被引:12
|
作者
Saik, Pavlo [1 ]
Berdnyk, Mykhailo [1 ]
机构
[1] Dnipro Univ Technol, Dnipro, Ukraine
来源
MINING OF MINERAL DEPOSITS | 2022年 / 16卷 / 02期
关键词
underground gasification; coal; heat transfer; thermal conductivity; Stefan problem;
D O I
10.33271/mining16.02.087
中图分类号
TD [矿业工程];
学科分类号
0819 ;
摘要
Purpose. A mathematical model development for heat transfer during underground coal gasification based on the transcen-dental equation solution by the Newton-Raphson method.Methods. The heat-transfer model development is based on the research into a temperature field with a variable size of the gasification zone when passing through the phase transformation boundary, which changes abruptly. The research on the coal seam T(x, t) temperature field and the displacement length of the phase transition boundary S(t) is based on the integration of the differential heat-transfer equation with the fulfillment of one-phase Stefan problem conditions. The proportionality factor (beta), characterizing the ratio of the displacement length of the "generator gas - coal" phase transition boundary to the time of coal seam gasification, is determined by substituting the Boltzmann equation and using the Newton-Raphson method based on solving the obtained transcendental equation.Findings. The main problems related to laboratory research on the coal gasification process have been identified. A math-ematical model of heat transfer during underground coal gasification for a closed georeactor system has been developed, taking into account the effective change in its active zones.Originality. A mathematical model of heat transfer during underground coal gasification at the phase transition boundary has been developed, under which the one-phase Stefan problem conditions are fulfilled. Dependences of the change in the underground gas generator temperature, taking into account the change in the active zones of chemical reactions along the length of the combustion face and the gasification column, have been revealed. In addition, the dependences of the change in the phase transition boundary of a "generator gas - coal" heterogeneous system have been determined, which characterize the displacement length of the phase transition boundary on time and reveal the relationship between the thermal conductivity coefficient, specific heat capacity, as well as bulk density of coal and its calorific value.Practical implications. A method has been developed to determine the displacement length of the phase transition bounda-ry of a "generator gas - coal" heterogeneous system and its relationship between the time and temperature of gasification pro-cess. This makes it possible to predict in the future the change in the active zones of the underground gas generator along the length of the gasification column.
引用
收藏
页码:87 / 94
页数:8
相关论文
共 50 条
  • [1] 2 METHODS FOR SOLVING THE PROBLEM OF HEAT-TRANSFER IN A RAREFIELD GAS
    ARISTOV, VV
    IVANOV, MS
    CHEREMISIN, FG
    USSR COMPUTATIONAL MATHEMATICS AND MATHEMATICAL PHYSICS, 1990, 30 (02): : 193 - 195
  • [2] CONTRIBUTION TO CREATING A MATHEMATICAL MODEL OF UNDERGROUND COAL GASIFICATION PROCESS
    Petrovic, David T.
    Djukanovic, Dusko N.
    Petrovi, Dragana M.
    Svrkota, Igor M.
    THERMAL SCIENCE, 2019, 23 (05): : 3275 - 3282
  • [3] Mathematical model for energy and exergy analysis of Underground coal gasification
    Palange, Rupesh Kishor
    Murugesan, Krishnan
    Thomas, H. R.
    PROCEEDINGS OF THE 25TH NATIONAL AND 3RD INTERNATIONAL ISHMT-ASTFE HEAT AND MASS TRANSFER CONFERENCE, IHMTC 2019, 2019,
  • [4] Theoretical research on heat transfer law during underground coal gasification channel extension process
    Xin, Lin
    Cheng, Weimin
    Xie, Jun
    Liu, Weitao
    Xu, Min
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2019, 142
  • [5] Numerical simulation on heat and mass transfer in the process of underground coal gasification
    Yang, LH
    Liu, SQ
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2003, 44 (05) : 537 - 557
  • [6] HEAT EXCHANGE OF THE COAL BED WITH ENCLOSING ROCKS DURING UNDERGROUND COAL GASIFICATION
    Kachurin, N. M.
    Zakharov, E., I
    Friedlander, G., V
    Ganin, M. P.
    PROCEEDINGS OF THE TULA STATES UNIVERSITY-SCIENCES OF EARTH, 2020, 2 : 301 - 308
  • [7] Simplifying the model of a complex heat-transfer system for solving the relay control problem
    Shilin A.A.
    Bukreev V.G.
    Thermal Engineering (English translation of Teploenergetika), 2014, 61 (09): : 671 - 678
  • [8] ANALYTICAL SOLUTION OF HEAT-TRANSFER PROBLEM IN UNDERGROUND CIRCULATING SYSTEMS
    MERZLJAKOV, EI
    RYZHENKO, IA
    TSYRULNIKOV, AS
    DOPOVIDI AKADEMII NAUK UKRAINSKOI RSR SERIYA A-FIZIKO-MATEMATICHNI TA TECHNICHNI NAUKI, 1978, (01): : 77 - 81
  • [9] Mathematical Modeling Temperature's Fields in Overburden During Underground Coal Gasification
    Karol, Kostur
    2014 15TH INTERNATIONAL CARPATHIAN CONTROL CONFERENCE (ICCC), 2014, : 248 - 253
  • [10] Mathematical Modeling of the Underground Coal Gasification Process in One Gasification Cycle
    Liu, Hongtao
    Liu, Shuqin
    Chen, Feng
    Zhao, Juan
    Qi, Kaili
    Yao, Hong
    ENERGY & FUELS, 2019, 33 (02) : 979 - 989