Citation: | ZHOU Fu-bao, HUANG Rong-ting, XIN Hai-hui, JIAN Cong-guang. Extraction and resource utilization of heat and humidity in mine ventilation[J]. Chinese Journal of Engineering, 2022, 44(10): 1709-1718. doi: 10.13374/j.issn2095-9389.2022.04.19.001 |
[1] |
國家能源局科學技術部. 關于印發《“十四五”能源領域科技創新規劃》的通知[EB/OL]. 信息公開 (2021-11-29) [2022-04-19]. http://zfxxgk.nea.gov.cn/2021-11/29/c_1310540453.htm
National Energy Administration, Ministry of Science and Technology of the People’s Republic of China. Notice on printing and distributing the plan for scientific and technological innovation in the energy field during the 14th five year plan [EB/OL]. Information Disclosure (2021-11-29) [2022-04-19]. http://zfxxgk.nea.gov.cn/2021-11/29/c_1310540453.htm
|
[2] |
袁亮. 淮南礦區礦井降溫研究與實踐. 采礦與安全工程學報, 2007, 24(3):298 doi: 10.3969/j.issn.1673-3363.2007.03.010
Yuan L. Theoretical analysis and practical application of coal mine cooling in Huainan mining area. J Min Saf Eng, 2007, 24(3): 298 doi: 10.3969/j.issn.1673-3363.2007.03.010
|
[3] |
李政, 張東杰, 潘玲穎, 等. “雙碳”目標下我國能源低碳轉型路徑及建議. 動力工程學報, 2021, 41(11):905 doi: 10.19805/j.cnki.jcspe.2021.11.001
Li Z, Zhang D J, Pan L Y, et al. Low-carbon transition of China's energy sector and suggestions with the 'carbon-peak and carbon-neutrality' target. J Chin Soc Power Eng, 2021, 41(11): 905 doi: 10.19805/j.cnki.jcspe.2021.11.001
|
[4] |
蔡美峰, 薛鼎龍, 任奮華. 金屬礦深部開采現狀與發展戰略. 工程科學學報, 2019, 41(4):417
Cai M F, Xue D L, Ren F H. Current status and development strategy of metal mines. Chin J Eng, 2019, 41(4): 417
|
[5] |
王海寧, 彭家蘭, 程哲. 高溫礦井的通風與降溫分析. 有色金屬工程, 2013, 3(3):34 doi: 10.3969/j.issn.2095-1744.2013.03.007
Wang H N, Peng J L, Cheng Z. Ventilation and cooling analysis of high temperature mine. Nonferrous Met Eng, 2013, 3(3): 34 doi: 10.3969/j.issn.2095-1744.2013.03.007
|
[6] |
高建良, 楊明. 巷道圍巖溫度分布及調熱圈半徑的影響因素分析. 中國安全科學學報, 2005, 15(2):73 doi: 10.3969/j.issn.1003-3033.2005.02.017
Gao J L, Yang M. Analysis of the factors influencing temperature distribution of surrounding rock and cooled zone radius. China Saf Sci J, 2005, 15(2): 73 doi: 10.3969/j.issn.1003-3033.2005.02.017
|
[7] |
呂向陽, 趙建康. 水源熱泵技術在礦井系統中的應用. 節能與環保, 2010(8):43
Lü X Y, Zhao J K. Application of water source heat pump technology in mine system. Energy Conserv Environ Prot, 2010(8): 43
|
[8] |
張振濤. 利用熱泵系統回收礦井排風余熱的研究[學位論文]. 西安: 西安建筑科技大學, 2015
Zhang Z T. Recovery of Mine Waste Heat of Exhaust Air Heat Pump System was Used to Study [Dissertation]. Xi'an: Xi'an University of Architecture and Technology, 2015
|
[9] |
李建光, 陳峰雷, 蔣正君, 等. 礦井低焓乏風余熱利用技術研究與應用. 中國煤炭, 2015, 41(12):120 doi: 10.3969/j.issn.1006-530X.2015.12.029
Li J G, Chen F L, Jiang Z J, et al. Research and application on low enthalpy ventilation air methane waste-heat utilization technology of mine. China Coal, 2015, 41(12): 120 doi: 10.3969/j.issn.1006-530X.2015.12.029
|
[10] |
高建良, 張學博. 潮濕巷道風流溫度及濕度計算方法研究. 中國安全科學學報, 2007, 17(6):114 doi: 10.3969/j.issn.1003-3033.2007.06.018
Gao J L, Zhang X B. Study on method of temperature and humidity calculation of airflow in wet airway. China Saf Sci J, 2007, 17(6): 114 doi: 10.3969/j.issn.1003-3033.2007.06.018
|
[11] |
莫樊, 郁鐘銘, 吳桂義, 等. 煤礦礦井水資源化及綜合利用. 煤炭工程, 2009, 41(6):103 doi: 10.3969/j.issn.1671-0959.2009.06.040
Mo F, Yu Z M, Wu G Y, et al. Resource utilization and comprehensive utilization of coal mine water. Coal Eng, 2009, 41(6): 103 doi: 10.3969/j.issn.1671-0959.2009.06.040
|
[12] |
熊楚超, 羅景輝, 魏瑩, 等. 分體式礦井排風余熱回收井口防凍系統應用探究. 煤炭工程, 2020, 52(12):12
Xiong C C, Luo J H, Wei Y, et al. Research on the application of an anti-freezing system at residual heat recovery head of a split-type mine shaft exhaust. Coal Eng, 2020, 52(12): 12
|
[13] |
高麗. 礦井余熱回收再利用技術在涼水井煤礦的運用. 化工管理, 2021(30):77
Gao L. Application of mine waste heat recovery and reuse technology in Liangshuijing coal mine. Chem Enterp Manag, 2021(30): 77
|
[14] |
蔡美峰, 多吉, 陳湘生, 等. 深部礦產和地熱資源共采戰略研究. 中國工程科學, 2021, 23(6):43
Cai M F, Dor J, Chen X S, et al. Development strategy for Co-mining of the deep mineral and geothermal resources. Strateg Study CAE, 2021, 23(6): 43
|
[15] |
陳慶剛, 葛啟發, 曹亮, 等. 基于Ventsim VisualTM高海拔礦井按需通風熱模擬研究. 有色冶金節能, 2020, 36(3):30
Chen Q G, Ge Q F, Cao L, et al. Study on thermal environment simulation of ventilation on demand of high altitude mine based on ventsim VisualTM. Energy Sav Nonferrous Metall, 2020, 36(3): 30
|
[16] |
王成. 基于自動化監控子系統對煤礦中乏風及涌水余熱回收的應用研究[學位論文]. 徐州: 中國礦業大學, 2020
Wang C. Application Research of Waste Heat Recovery of Lack of Air and Inrush Water in Coal Mine Based on Automation Monitoring Subsystem [Dissertation]. Xuzhou: China University of Mining and Technology, 2020
|
[17] |
王健, 黃煒, 王衛東. 淺談冀中能源集團某礦回風源熱泵系統的應用與優化. 黑龍江科技信息, 2012(7):103
Wang J, Huang W, Wang W D. Application and optimization of return air source heat pump system in a mine of Jizhong energy group. Heilongjiang Sci Technol Inf, 2012(7): 103
|
[18] |
劉麗娟, 王吉明, 任丕清. 回風源熱泵技術在煤礦的應用與實踐研究. 應用能源技術, 2012(10):35 doi: 10.3969/j.issn.1009-3230.2012.10.009
Liu L J, Wang J M, Ren P Q. Application on return air source heat pump in heat recovery in a coal mine. Appl Energy Technol, 2012(10): 35 doi: 10.3969/j.issn.1009-3230.2012.10.009
|
[19] |
王浩. 高溫采煤工作面圍巖散熱及風溫預測數值模擬方法研究[學位論文]. 北京: 中國礦業大學(北京), 2018
Wang H. Numerical Simulation Method Research on Heat Dissipation of Surrounding Rock and Prediction of Wind Temperature in High Temperature Coal Mining Face [Dissertation]. Beijing: China University of Mining & Technology, Beijing, 2018
|
[20] |
高建良, 魏平儒. 掘進巷道風流熱環境的數值模擬. 煤炭學報, 2006, 31(2):201 doi: 10.3321/j.issn:0253-9993.2006.02.015
Gao J L, Wei P R. Numerical simulation of the thermal environment at working face of diving airway. J China Coal Soc, 2006, 31(2): 201 doi: 10.3321/j.issn:0253-9993.2006.02.015
|
[21] |
姬建虎, 廖強, 胡千庭, 等. 熱害礦井掘進工作面換熱特性. 煤炭學報, 2014, 39(4):692 doi: 10.13225/j.cnki.jccs.2013.0478
Ji J H, Liao Q, Hu Q T, et al. Heat transfer characteristics of driving face in heat harm mine. J China Coal Soc, 2014, 39(4): 692 doi: 10.13225/j.cnki.jccs.2013.0478
|
[22] |
陳開巖, 周福寶, 夏同強, 等. 基于空氣狀態參數與風量耦合迭代的風網解算方法. 中國礦業大學學報, 2021, 50(4):613 doi: 10.13247/j.cnki.jcumt.001307
Chen K Y, Zhou F B, Xia T Q, et al. Ventilation network solution method based on coupling iteration of air state parameters and air quantity. J China Univ Min Technol, 2021, 50(4): 613 doi: 10.13247/j.cnki.jcumt.001307
|
[23] |
周心權, 吳兵. 礦井火災救災理論與實踐. 北京: 煤炭工業出版社, 1996
Zhou X Q, Wu B. Theory and Practice of Mine Fire Disaster Relief. Beijing: China Coal Industry Publishing House, 1996
|
[24] |
陳開巖. 礦井通風系統優化理論及應用. 徐州: 中國礦業大學出版社, 2003
Chen K Y. The Theory and Application of Mine Ventilation System Optimization. Xuzhou: China University of Mining & Technology Press, 2003
|
[25] |
張素芬, 柯金川, 秦躍平. 礦井全風網風溫預測法及其計算機程序的研究. 中國礦業大學學報, 1992, 21(1):34
Zhang S F, Ke J C, Qin Y P. Study on the prediction of air temperature distribution in overall mine ventilation network and a computer program for this purpose. J China Univ Min Technol, 1992, 21(1): 34
|
[26] |
馬恒, 高巍, 周西華. 礦井氣候多參數預測與通風網絡自動解算算法研究. 中國安全生產科學技術, 2017, 13(11):110 doi: 10.11731/j.issn.1673-193x.2017.11.018
Ma H, Gao W, Zhou X H. Study on multi-parameter prediction of mine climate and automatic solution algorithm of ventilation network. J Saf Sci Technol, 2017, 13(11): 110 doi: 10.11731/j.issn.1673-193x.2017.11.018
|
[27] |
濟寧市人民政府發展和改革委員會. 濟發改價格〔2019〕201號關于濟寧城區居民生活用管道天然氣價格有關事項的通知[EB/OL]. 信息公開(2022-03-11) [2022-04-19]. http://www.jining.gov.cn/art/2022/3/11/art_33390_2763920.html
Jining Development and Reform Commission. Notice on matters relating to the price of piped natural gas for residential use in Jining City [EB/OL]. Information Disclosure (2022-03-11) [2022-04-19]. http://www.jining.gov.cn/art/2022/3/11/art_33390_2763920.html
|
[28] |
中華人民共和國國家發展和改革委員會. 能源危機導致全球電價上漲 中國“保供穩價”效果明顯[EB/OL]. 中國電力報 (2022-01-30) [2022-04-19].https://www.ndrc.gov.cn/xwdt/ztzl/gnjnybg/202201/t20220130_1314263.html
National Development and Reform Commission. The energy crisis has led to a rise in global electricity prices China's "supply and price stability" effect is obvious [EB/OL]. China Electricity News (2022-01-30) [2022-04-19].https://www.ndrc.gov.cn/xwdt/ztzl/gnjnybg/202201/t20220130_1314263.html
|
[29] |
International Energy Agency. Gas Market Report Q4-2021 including Global Gas Security Review 2021 [EB/OL]. Information Disclosure (2021-10) [2022-04-19].https://www.iea.org/reports/gas-market-report-q4-2021
|
[30] |
Riffat S B, Ma X L. Thermoelectrics: A review of present and potential applications. Appl Therm Eng, 2003, 23(8): 913 doi: 10.1016/S1359-4311(03)00012-7
|