Numerical study on calculation model of airflow temperature and humidity prediction in humid airway

Author:

Wang Yongjun123ORCID,Zhang Hemeng123,Zheng Qian1,Dong Wei4,Zhao Ruoji5,Zhang Xun6,Zhang Xiaoming2,Sugai Yuichi4,Sasaki Kyuro7

Affiliation:

1. College of Safety Science and Engineering Liaoning Technical University Huludao China

2. Institute of Engineering and Environment Liaoning Technical University Huludao China

3. Key Laboratory of Mine Thermodynamic Disasters and Control of Ministry of Education Huludao China

4. Faculty of Engineering Kyushu University Fukuoka Japan

5. Liaoning Aolutong Technology Co. Ltd. Shenyang China

6. College of Mining Liaoning Technical University Fuxin China

7. Institute for Future Engineering Tokyo Japan

Abstract

AbstractIn deep coal mining, the high temperature and humidity environment are one of the main disasters threatening workers and equipment. To predict the temperature and humidity of airflow in the airway accurately, this study establishes a numerical calculation model of the surrounding rock temperature, airflow temperature, and humidity under the conditions of considering the moisture evaporation and heat absorption of the airway wall, the condensation and heat release of supersaturated water vapor in the airflow, and the influence of air compression or expansion. Combined with the two‐dimensional (2D) heat conduction model (considering the influence of the axial surrounding rock heat conduction of the airway), the axial strip partial moisture calculation model of the airway is proposed, and then the uniform moist wall model and the axial strip partial moist wall model are established. The influence of different parameters on the temperature and humidity of airflow is discussed by analyzing the results of numerical simulation of the uniform wet surface model (UWSM) and partly wet surface model (PWSM) of the airway wall. The results show that the surrounding rock temperature, especially the temperature distribution of the airway wall, calculated by using the 2D heat conduction model under the local humid airway conditions, is more realistic. The increment of airflow temperature decreases with the increase of wet area ratio, airflow temperature at the entrance and airway radius, and increases with relative humidity at the entrance. The calculation accuracy of temperature and humidity prediction for large ventilation networks can be further improved by using the equivalent humidity of the UWSM to replace the correction coefficient of the wet area ratio of the PWSM.

Funder

National Natural Science Foundation of China

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

General Energy,Safety, Risk, Reliability and Quality

Reference24 articles.

1. Study on Assessment of High Temperature and Humidity in Working Environment on Human Health

2. The analysis and simulation of heat flow into underground airways

3. DankoG BahramiD. Application of multiflux for air heat and moisture flow simulations. Paper presented at: 12th U.S./North American Mine Ventilation Symposium. Nevada University Press. 2008.

4. The effect of temperature of rocks on microclimatic conditions in long gate roads and galleries in coal mines;Cygankiewicz J;Arch Min Sci,2014

5. Study on method of temperature and humidity calculation of airflow in the wet airway;Gao JL;China Saf Sci J,2007

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