Seepage-thermal dynamical coupling model for spontaneous combustion of coalfield outcrop and its application
-
摘要: 分析了煤田露頭介質內氣體滲流及露頭自燃熱動力系統特征,建立了煤田露頭自燃滲流-熱動力耦合模型,推導了煤自燃過程中揮發分計算式.對新疆某煤田自燃火區進行了數值模擬.結果表明:開采引發煤田露頭自燃時,燃燒中心集中在頂板附近,燃燒沿頂板向露頭方向蔓延較快;高溫區域靠近頂板,燃燒區域以外巖石內溫度梯度變化不明顯;自燃生成氣體主要集中于露頭自燃點下風側方向,上風側方向只有很小范圍內有自燃氣體存在;高溫區域分布與自燃氣體滲流方位位置一致;自燃加速了氣體在煤巖介質內的滲流,有助于自燃的發展.根據模擬結果對煤田火區治理時火源探測、治理及監測等相關措施進行了具體分析.Abstract: The characters of gas seepage in coalfield outcrop and the thermal dynamical system of outcrop spontaneous combustion were analyzed. A model coupling seepage with thermal dynamics for spontaneous combustion of coalfield outcrop was set up. The calculation equation of volatile output during coal spontaneous combustion was deduced. One coal fire in Xinjiang Uygur Autonomous Region of China was selected as the simulated object by the seepage-thermal dynamic model. It is shown that when spontaneous combustion of coal outcrop results from the mining, the combustion center centralizes near the roof and spreads to the outcrop direction quickly. The high-temperature region locates below the roof and the temperature gradient out of the combustion area is not obvious. Gases produced by coal spontaneous combustion mainly flow in the downstream of the spontaneous combustion area and the combusted gases only exists a small region on the upstream of the combustion area. The higher temperature distribution accords with the seepage scope of spontaneous combustion gases. Whereas, coal spontaneous combustion accelerates gas seepage in the coal and rock medium and is helpful to development of spontaneous combustion. At last, based on the simulated results, some measures on the coalfield fire location, fire control and fire monitor were analyzed.
-
Key words:
- outcrop /
- spontaneous combustion /
- seepage flow /
- numerical simulation
-

計量
- 文章訪問數: 238
- HTML全文瀏覽量: 89
- PDF下載量: 10
- 被引次數: 0