中国科学院气候系统模式CAS-ESM-C模拟的ENSO循环

来源 :第八次全国动力气象学术会议 | 被引量 : 0次 | 上传用户:xtgdscf
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
CAS-ESM-C是基于中国科学院大气物理研究所第四代大气环流模式IAP AGCM4.0发展的中国科学地球系统模式的气候系统模式分量.利用该模式200年的参照试验积分结果,分析了模式对ENSO循环的模拟能力.
其他文献
The ancient Mediterranean was once dried up around 6~5.3million years ago.It is a landmark event,which had great impact on global environment and climate.However,few references are available in the li
会议
In China,the strategic resource potash is suffering from severe shortages,and the ancient marine solid potash locating is still a problem of long impregnability.Till now,only the Mengyejing Potash Dep
Lithology of Triassic in southwestern Sichuan is consistent with the whole basin,and there is no discussion about stratum division,the difference is stratum denudation which is made by the uplifting o
会议
1 Introduction Studies on lakes have become an important concern for many scientists since it is well known that lakes can monitor detailed information about ecological,hydrological and sedimentary cy
Evaporites with gigantic thickness had been developed in Kuqa Basin from Paleocene to early Miocene,and the sediment thickness changed from tens to thousands of meters.
Since the Quaternary,very thick lacustrine sediments have been deposited in Dalangtan of Qaidam Basin.Based on a study of high-resolution sporopollen analysis on the Dalangtan ZK06 drilling,and paleom
This paper briefly introduces resources characteristics and development advantages for Charhan salt lake;and elaborated the technology progress to increase potassium mining scale systematically,the im
1 Introduction Qaidam Basin in Qinghai,including 43 salt lakes with multiple dominant mineral such as potassium,magnesium,lithium etc.,is the most intensive distribution of Saline Lake resources,the l
会议
The interdecadal change in seasonal predictability and numerical models seasonal forecast skill in the Northern Hemisphere (NH) are examined using both observations and the seasonal hindcast from six
利用一个采用谱元方法进行水平方向数值离散的大气模式SEMAS(Spectral Element Model with Atmospheric Stratosphere resolved)在两种垂直分辨率(模式大气顶气压分别为0.316 hPa和4.5×10-6 hPa,离散层数分别为28和66)条件下对平流层气候特征进行了数值模拟,利用ERA-Interim再分析数据集对模拟结果进行了检验,并与美