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Coupling of the Calculated Freezing and Thawing Front Parameterization in the Earth System Model CAS-ESM 被引量:3
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作者 Ruichao LI Jinbo XIE +5 位作者 Zhenghui XIE Binghao JIA Junqiang GAO Peihua QIN Longhuan WANG Si CHEN 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第9期1671-1688,共18页
The soil freezing and thawing process affects soil physical properties,such as heat conductivity,heat capacity,and hydraulic conductivity in frozen ground regions,and further affects the processes of soil energy,hydro... The soil freezing and thawing process affects soil physical properties,such as heat conductivity,heat capacity,and hydraulic conductivity in frozen ground regions,and further affects the processes of soil energy,hydrology,and carbon and nitrogen cycles.In this study,the calculation of freezing and thawing front parameterization was implemented into the earth system model of the Chinese Academy of Sciences(CAS-ESM)and its land component,the Common Land Model(CoLM),to investigate the dynamic change of freezing and thawing fronts and their effects.Our results showed that the developed models could reproduce the soil freezing and thawing process and the dynamic change of freezing and thawing fronts.The regionally averaged value of active layer thickness in the permafrost regions was 1.92 m,and the regionally averaged trend value was 0.35 cm yr–1.The regionally averaged value of maximum freezing depth in the seasonally frozen ground regions was 2.15 m,and the regionally averaged trend value was–0.48 cm yr–1.The active layer thickness increased while the maximum freezing depth decreased year by year.These results contribute to a better understanding of the freezing and thawing cycle process. 展开更多
关键词 frozen ground freezing and thawing fronts maximum freezing depth active layer thickness earth system model cas-esm
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CAS-ESM 1.0模式对7月份热带太平洋上层流场异常模态的模拟评估
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作者 盖泳铭 卢姁 +1 位作者 张东凌 张铭 《气候与环境研究》 2024年第6期723-734,共12页
利用CAS-ESM 1.0模式模拟得到的1922~2005年共84年的7月份资料,对流场异常作了复EOF分解,并与该模式模拟的1月份结果以及相应的实况(SODA资料)和理论结果作了对比和分析。结果表明:在表层、近表层、次表层及上层底,该EOF分解的第一、二... 利用CAS-ESM 1.0模式模拟得到的1922~2005年共84年的7月份资料,对流场异常作了复EOF分解,并与该模式模拟的1月份结果以及相应的实况(SODA资料)和理论结果作了对比和分析。结果表明:在表层、近表层、次表层及上层底,该EOF分解的第一、二模态空间场中明显流场异常都分布在10°S~10°N,为赤道所俘获。总体上流场异常以纯纬向流动为主;它们均与赤道流系异常及赤道波动有较好对应。从表层到上层底流场异常随海洋深度明显减弱。第一、二模态都具有3~5年的年际变化周期,并以4年的年际变化最明显,并都落在ENSO的变化范围中。这两个模态都无明显年代际变化。次表层第一模态的海温异常为,西太平洋暖池区以及西、中太平洋赤道附近有负异常,在东太平洋赤道区及南美洲沿岸有正异常,两者随时间呈跷跷板变化;第二模态海温异常为,中西太平洋以负异常为主,中东太平洋则以正异常为主,并也呈跷跷板变化,且该变化包括了第一模态的跷跷板变化。本文第一、二模态的性质分别是ENSO的主、次模态。本文时间系数无明显年代际变化是因模式未能很好反映印尼穿越流所致;模式模拟的赤道两侧的明显流场异常宽度要较实况宽一倍;以上这些都表明模式在近赤道处的分辨率还不够高,须进一步提高;此外该模式的物理过程和海气耦合程序也需继续改进和优化。 展开更多
关键词 地球系统模式 cas-esm 1.0 热带太平洋 7 月份流场异常 EOF 分解 模拟评估
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