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冷暖空气入侵对西南低涡发生发展影响研究 被引量:13
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作者 屠妮妮 何光碧 陈静 《高原山地气象研究》 2012年第2期10-19,共10页
本文采用WRF模式模拟了2008年7月20~22日四川省一次由西南涡活动引发的大暴雨过程,并分析了对流层中层至中低层冷/暖空气入侵在西南涡发生发展过程中的作用,研究结果表明:冷/暖空气从北部入侵会改变对流层中、低层流场,当降低模式北边... 本文采用WRF模式模拟了2008年7月20~22日四川省一次由西南涡活动引发的大暴雨过程,并分析了对流层中层至中低层冷/暖空气入侵在西南涡发生发展过程中的作用,研究结果表明:冷/暖空气从北部入侵会改变对流层中、低层流场,当降低模式北边界温度,增强西北气流南下,致使四川省上空没有形成西南涡,取而代之为一深槽,同时雨区内上升运动减弱、低层辐合减弱,对流层中层温度增加、比湿略减小,雨区集中在深槽附近,雨区范围和强度都显著减弱且小于控制试验。增加模式北部温度引起北部东北气流向南输送,低值系统南移,增温促进了周围空气向降水中心辐合,增强了中低层大气的辐合上升运动,对流层中、中高层增温,雨带南压,雨区强度显著增强且大于控制试验。降低或增加模式西边界温度对流场、低涡强度和位置影响相对较小,降温使得低涡位置偏北、对流层风速增强与减弱区交替分布;增温使得低涡偏东、对流层中层至中低层风速减弱高层风速增强,二者对降水落区影响亦较小,对大暴雨中心强度有不同程度影响。 展开更多
关键词 西南涡 大暴雨 冷/暖空气 WRF模式
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DIAGNOSTIC ANALYSIS OF THE RE-INTENSIFICATION OF HIGOS IN SOUTHERN CHINA AFTER LANDFALL 被引量:1
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作者 卢山 吴乃庚 《Journal of Tropical Meteorology》 SCIE 2010年第2期181-188,共8页
The NCEP Global Data Assimilation System analysis of grid data, satellite products of Naval Research Laboratory, conventional meteorological data and observations of automatic weather stations in Guangdong province we... The NCEP Global Data Assimilation System analysis of grid data, satellite products of Naval Research Laboratory, conventional meteorological data and observations of automatic weather stations in Guangdong province were used together with environmental conditions, atmospheric circulation, and physical characteristics to diagnose the cause and mechanism of the intensification of tropical cyclone Higos in Southern China. The results showed that favorable environmental conditions of high temperature, humidity of the underlying surface, strong upper divergence, weak vertical wind shear, and the persistence of a southwest jet stream beside the southern Higos were the necessary ingredients that contributed to the maintenance of intensity and re-intensification of Higos. The sinking intrusion of cold air from the lower troposphere was the critical condition for its intensification over land. The fxontal genesis caused by weak cold air increased the lower tropospheric convergence and updraft, and the condensation latent heat released by heavy rains promoted convergence. From this positive feedback process, Higos obtained an increasing of positive vorticity and re-intensified over land. The re-intensification was due not only to the build-up of wind and the reduction of pressure but also to the simultaneous warm-up of its warm core. 展开更多
关键词 Higos intensification over land cold air warm core
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Numerical Analysis of Influencing Factors on Temperature Field and Airflow Distribution of the Displacement Ventilation System 被引量:1
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作者 那艳玲 邢金城 +1 位作者 涂光备 于松波 《Transactions of Tianjin University》 EI CAS 2005年第1期66-72,共7页
Indoor air quality and thermal comfort are important features of indoor environment. In this paper, a numerical simulation based on the k-ε model of CFD is used to analyze factors such as loading, exterior-protected ... Indoor air quality and thermal comfort are important features of indoor environment. In this paper, a numerical simulation based on the k-ε model of CFD is used to analyze factors such as loading, exterior-protected construction, blowing-in rate that play an important role in the temperature field and airflow field of the displacement ventilation system. Exterior-protected construction has little influence on indoor temperature distribution of displacement ventilation systems and the influence is limited only in a small area near the external wall when the indoor heat source is the main cooling load.The height of a room has little influence on indoor temperature field, and the temperature gradient of active region is basically unchanged. In the system combined with a displacement ventilation system and a cooling system, the height also has little influence. When the cooling load is high,the indoor heat source creates a strong convective plume, which will make the average indoor air age lower, the ventilation efficiency higher and the elimination of pollutant easier. Air supply rate plays an important role in displacement ventilation systems. The increase of air supply rate that can be realized by increasing the air supply velocity and enlarging the area of air inlet will increase the mass capability of the system and diminish the vertical temperature gradient. From the comparison between simulations and experiments, it is concluded that this simulation are creditable. 展开更多
关键词 cooling load exterior-protected construction air supply rate CFD numerical simulation ENERGY-SAVING
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