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Global Geology 2015, 18(1) 32-40 DOI:
ISSN: 1673-9736 CN: 22-1371/P |
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Simulation and analysis for anthropogenic heat release |
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WANG Mingchang, Matsushima Dai, NIU Xuefeng, LIANG Liheng and LI Qiyuan |
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1�� College of Geo- Exploration Science and Technology��Jilin University��Changchun 130026��China; 2�� Department of Architecture and Civil Engineering��Chiba Institute of Technology��Chiba 275- 0016��Japan; 3�� College of Urban and Environmental Sciences��Changchun Normal University��Changchun 130032��China |
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Abstract��
Heat balance of urban ecosystem is a key point for the study of urban climate and micro- climate pat- tern and its change mechanism�� Urban heat island effect is becoming increasingly serious��which is mainly caused by the change of the earth's surface cover and the anthropogenic heat release�� In this study��the simula- tion experiment for the anthropogenic heat release was designed according to the heat balance principle�� A set of buildings of miniature city were used to constitute the residential area��U grooves were applied to simulate the single building��and the fluorescent lamps in the U groove were regarded as the heat sources of the anthropoge- nic heat release�� The simulation experiment was launched with long- short wave sun photometer��sonic anemo- thermometer and heat flow gauge in the experiment site�� Then the net solar radiation��sensible heat flux and heat flux into the ground were determined�� The quantities of the anthropogenic heat release were calculated based on the heat balance principle��and were compared with the theoretical power consumption of the fluores- cent lamps�� The root mean square error (��MSE) of the simulation for the anthropogenic heat release reaches 0.078 W ·m-2 ��a comparatively high precision��which showes that the anthropogenic heat release can be accu- rately determined through the simulation experiments�� This study provided a scientific method for the purpose of monitoring the anthropogenic heat release�� |
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Keywords��
urban heat island
anthropogenic heat release
sensible heat flux
net radiation
heat balance
heat flux into the ground
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