期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于WRF驱动的CLM模型对青藏高原地区陆面过程模拟研究 被引量:14
1
作者 罗立辉 张耀南 +2 位作者 周剑 潘小多 孙维君 《冰川冻土》 CSCD 北大核心 2013年第3期553-564,共12页
NCAR-CLM是目前国际上发展较为完善的陆面过程模型.鉴于大多数研究利用气象站点的数据驱动CLM模型,尝试将WRF气候模型的模拟结果作为驱动CLM的面上强迫场数据来对青藏高原陆面能量特征进行模拟研究.对WRF气候模型模拟的输出结果与青藏... NCAR-CLM是目前国际上发展较为完善的陆面过程模型.鉴于大多数研究利用气象站点的数据驱动CLM模型,尝试将WRF气候模型的模拟结果作为驱动CLM的面上强迫场数据来对青藏高原陆面能量特征进行模拟研究.对WRF气候模型模拟的输出结果与青藏高原气象站观测数据进行比较分析表明,WRF模拟输出的气温和向下短波辐射数值与观测值的相关系数大于0.92(p>0.05),气压和比湿的R2在0.80以上(p>0.05),降雨和风速的模拟性能不稳定,但WRF模拟输出的强迫场也可以作为CLM模型的驱动数据.CLM模拟的地表温度、感热和潜热通量与青藏高原气象站观测的地表温度以及涡度通量数据验证分析表明,虽然CLM对地表温度的模拟在合理范围内,但模拟与观测值还是有较大偏差,潜热和感热之间的相关系数分别为0.87和0.68(p>0.05),表明CLM的模拟结果在单点上是可靠的.据此,在此模拟结果基础上分析了青藏高原地区的陆面能量时空分布特征. 展开更多
关键词 CLM陆面过程模型 WRF驱动 模型评估 青藏高原 陆面能量特征
原文传递
Impacts of salinity parameterizations on temperature simulation over and in a hypersaline lake 被引量:2
2
作者 文莉娟 NAGABHATLA Nidhi +2 位作者 赵林 李照国 陈世强 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第3期790-801,共12页
In this paper,we introduced parameterizations of the salinity effects(on heat capacity,thermal conductivity,freezing point and saturated vapor pressure) in a lake scheme integrated in the Weather Research and Forecast... In this paper,we introduced parameterizations of the salinity effects(on heat capacity,thermal conductivity,freezing point and saturated vapor pressure) in a lake scheme integrated in the Weather Research and Forecasting model coupled with the Community Land Model(WRF-CLM). This was done to improve temperature simulation over and in a saline lake and to test the contributions of salinity effects on various water properties via sensitivity experiments. The modified lake scheme consists of the lake module in the CLM model,which is the land component of the WRF-CLM model. The Great Salt Lake(GSL) in the USA was selected as the study area. The simulation was performed from September 3,2001 to September 30,2002. Our results show that the modif ied WRF-CLM model that includes the lake scheme considering salinity effects can reasonably simulate temperature over and in the GSL. This model had much greater accuracy than neglecting salinity effects,particularly in a very cold event when that effect alters the freezing point. The salinity effect on saturated vapor pressure can reduce latent heat flux over the lake and make it slightly warmer. The salinity effect on heat capacity can also make lake temperature prone to changes. However,the salinity effect on thermal conductivity was found insignificant in our simulations. 展开更多
关键词 temperature simulation salinity parameterizations wrf-clm Great Salt Lake
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部