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FLUENT对云凝结核计数器云室内气流特征的模拟研究 被引量:2
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作者 于仁杰 赵春生 +7 位作者 薛惠文 马楠 陶江川 付仕佐 张健鹏 旷烨 刘宏剑 边宇轩 《北京大学学报(自然科学版)》 EI CAS CSCD 北大核心 2017年第5期817-824,共8页
运用计算流体力学模型ANSYS FLUENT,对DMT公司的恒流热梯度云凝结核计数器(CCNC)云室内的流场、温度场以及水汽场进行模拟。依据外场观测和室内实验中的常用进气流速0.0164,0.0185,0.0205,0.0226和0.0246 m/s以及云室温差2,8和17 K,对... 运用计算流体力学模型ANSYS FLUENT,对DMT公司的恒流热梯度云凝结核计数器(CCNC)云室内的流场、温度场以及水汽场进行模拟。依据外场观测和室内实验中的常用进气流速0.0164,0.0185,0.0205,0.0226和0.0246 m/s以及云室温差2,8和17 K,对比不同进气流速和云室温差对云室内流场的影响。结果显示,云室内的速度场和温度场均受进气流速和云室温差的影响。当云室温差为8 K,进气流速为0.0205m/s时,模拟出的云室中心线的过饱和度约为0.27%,较好地模拟出云室内的水汽过饱和状态。 展开更多
关键词 云凝结核计数器(CCNC) ANSYS FLUENT 速度场 温度场 水汽场
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A STUDY OF THE INFLUENCE OF MICROPHYSICAL PROCESSES ON TYPHOON NIDA(2016) USING A NEW DOUBLE-MOMENT MICROPHYSICS SCHEME IN THE WEATHER RESEARCH AND FORECASTING MODEL 被引量:5
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作者 LI Zhe ZHANG Yu-tao +2 位作者 LIU Qi-jun FU Shi-zuo MA Zhan-shan 《Journal of Tropical Meteorology》 SCIE 2018年第2期123-130,共8页
The basic structure and cloud features of Typhoon Nida(2016) are simulated using a new microphysics scheme(Liuma) within the Weather Research and Forecasting(WRF) model. Typhoon characteristics simulated with the Lium... The basic structure and cloud features of Typhoon Nida(2016) are simulated using a new microphysics scheme(Liuma) within the Weather Research and Forecasting(WRF) model. Typhoon characteristics simulated with the Liuma microphysics scheme are compared with observations and those simulated with a commonly-used microphysics scheme(WSM6). Results show that using different microphysics schemes does not significantly alter the track of the typhoon but does significantly affect the intensity and the cloud structure of the typhoon. Results also show that the vertical distribution of cloud hydrometeors and the horizontal distribution of peripheral rainband are affected by the microphysics scheme. The mixing ratios of rain water and graupel correlate highly with the vertical velocity component and equivalent potential temperature at the typhoon eye-wall region. According to the simulation with WSM 6 scheme,it is likely that the very low typhoon central pressure results from the positive feedback between hydrometeors and typhoon intensity. As the ice-phase hydrometeors are mostly graupel in the Liuma microphysics scheme, further improvement in this aspect is required. 展开更多
关键词 Liuma microphysics scheme typhoon intensity cloud microphysics typhoon structure Weather Research and Forecasting model
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