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Hydrologic Response to Future Climate Change in the Dulong-Irra-waddy River Basin Based on Coupled Model Intercomparison Project 6
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作者 XU Ziyue MA Kai +1 位作者 YUAN Xu HE Daming 《Chinese Geographical Science》 SCIE CSCD 2024年第2期294-310,共17页
Within the context of the Belt and Road Initiative(BRI)and the China-Myanmar Economic Corridor(CMEC),the Dulong-Ir-rawaddy(Ayeyarwady)River,an international river among China,India and Myanmar,plays a significant role... Within the context of the Belt and Road Initiative(BRI)and the China-Myanmar Economic Corridor(CMEC),the Dulong-Ir-rawaddy(Ayeyarwady)River,an international river among China,India and Myanmar,plays a significant role as both a valuable hydro-power resource and an essential ecological passageway.However,the water resources and security exhibit a high degree of vulnerabil-ity to climate change impacts.This research evaluates climate impacts on the hydrology of the Dulong-Irrawaddy River Basin(DIRB)by using a physical-based hydrologic model.We crafted future climate scenarios using the three latest global climate models(GCMs)from Coupled Model Intercomparison Project 6(CMIP6)under two shared socioeconomic pathways(SSP2-4.5 and SSP5-8.5)for the near(2025-2049),mid(2050-2074),and far future(2075-2099).The regional model using MIKE SHE based on historical hydrologic processes was developed to further project future streamflow,demonstrating reliable performance in streamflow simulations with a val-idation Nash-Sutcliffe Efficiency(NSE)of 0.72.Results showed that climate change projections showed increases in the annual precip-itation and potential evapotranspiration(PET),with precipitation increasing by 11.3%and 26.1%,and PET increasing by 3.2%and 4.9%,respectively,by the end of the century under SSP2-4.5 and SSP5-8.5.These changes are projected to result in increased annual streamflow at all stations,notably at the basin’s outlet(Pyay station)compared to the baseline period(with an increase of 16.1%and 37.0%at the end of the 21st century under SSP2-4.5 and SSP5-8.5,respectively).Seasonal analysis for Pyay station forecasts an in-crease in dry-season streamflow by 31.3%-48.9%and 22.5%-76.3%under SSP2-4.5 and SSP5-8.5,respectively,and an increase in wet-season streamflow by 5.8%-12.6%and 2.8%-33.3%,respectively.Moreover,the magnitude and frequency of flood events are pre-dicted to escalate,potentially impacting hydropower production and food security significantly.This research outlines the hydrological response to future climate change during the 21st century and offers a scientific basis for the water resource management strategies by decision-makers. 展开更多
关键词 climate change hydrologic response coupled model intercomparison project 6(cmip6) MIKE SHE(Système Hydrologique Europeén) Dulong-Irrawaddy River Basin
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Projected Regional 1.50℃and 2.00℃Warming Threshold-crossing Time Worldwide Using the CMIP6 Models
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作者 MENG Yali DUAN Keqin +5 位作者 SHANG Wei SHI Peihong LI Shuangshuang CHENG Ying CHEN Rong ZHANG Zhaopeng 《Chinese Geographical Science》 SCIE CSCD 2023年第6期1095-1108,共14页
The Paris Agreement aims to limit global warming to well below 2.00℃and pursue efforts to limit the temperature increase to 1.50℃.However,the response of climate change to unbalanced global warming is affected by sp... The Paris Agreement aims to limit global warming to well below 2.00℃and pursue efforts to limit the temperature increase to 1.50℃.However,the response of climate change to unbalanced global warming is affected by spatial and temporal sensitivities.To better understand the regional warming response to global warming at 1.50℃and 2.00℃,we detected the 1.50℃and 2.00℃warming threshold-crossing time(WTT)above pre-industrial levels globally using the Coupled Model Intercomparison Project phase 6(CMIP6)models.Our findings indicate that the 1.50℃or 2.00℃WTT differs substantially worldwide.The warming rate of land would be approximately 1.35–1.46 times that of the ocean between 60°N–60°S in 2015–2100.Consequently,the land would experience a 1.50℃(2.00℃)warming at least 10–20 yr earlier than the time when the global mean near-surface air temperature reaches 1.50℃(2.00℃)WTT.Meanwhile,the Southern Ocean between 0°and 60°S considerably slows down the global 1.50℃and 2.00℃WTT.In 2040–2060,over 98.70%(77.50%),99.70%(89.30%),99.80%(93.40%),and 100.00%(98.00%)of the land will have warmed by over 1.50℃(2.00℃)under SSP(Shared Socioeconomic Pathway)1–2.6,SSP2-4.5,SSP3-7.0,and SSP5-8.5,respectively.We conclude that regional 1.50℃(2.00℃)WTT should be fully considered,especially in vulnerable high-latitude and high-altitude regions. 展开更多
关键词 cmip6(coupled model intercomparison project phase 6) global warming 1.50℃warming time 2.00℃warming time regional differences
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基于CMIP6的岷沱江流域径流预估
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作者 江楠 倪福全 +4 位作者 邓玉 向军 吴明炎 康文东 岳紫莹 《水生态学杂志》 北大核心 2026年第1期25-36,共12页
揭示岷沱江流域未来径流变化趋势,为岷沱江流域水资源管理和决策提供科学依据。基于SWAT模型和第六次国际耦合模式比较计划(CMIP6),采用6个全球气候模式(GCMs)的多模式集合平均(MME),将基准期(1981—2014年)与未来2个时期2017—2050年和... 揭示岷沱江流域未来径流变化趋势,为岷沱江流域水资源管理和决策提供科学依据。基于SWAT模型和第六次国际耦合模式比较计划(CMIP6),采用6个全球气候模式(GCMs)的多模式集合平均(MME),将基准期(1981—2014年)与未来2个时期2017—2050年和2057—2090年对比,评估4种不同的共享社会经济路径(SSPs)下岷沱江流域未来径流情况。结果表明:(1)SWAT模型在岷沱江流域径流模拟中具有较好的适用性,研究区7个水文监测站月径流模拟效果较好;(2)采用MME模拟气温和降水相关系数分别为0.99和0.93,模拟值与观测值有极高的相似度;(3)相较基准期,在各种情景下,未来岷沱江流域年均气温呈增加趋势,SSP5-8.5增温最为明显,年均降水量呈波动上升趋势;(4)不同情景下的未来2个时期,岷沱江流域的径流量将会减少,2017—2050年期间径流减少的幅度大于2057—2090年,减少的区域集中在岷江上游、沱江下游和青衣江流域。降雨的增加并不能完全消弭流域持续温升驱动的径流量减少。 展开更多
关键词 第六次国际耦合模式比较计划 SWAT模型 径流 集合预估 岷沱江流域
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Projections of changes in marine environment in coastal China seas over the 21^st century based on CMIP5 models 被引量:6
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作者 TAN Hongjian CAI Rongshuo +1 位作者 HUO Yunlong GUO Haixia 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2020年第6期1676-1691,共16页
The increases of atmospheric carbon dioxide and other greenhouse gases have caused fundamental changes to the physical and biogeochemical properties of the oceans,and it will continue to occur in the foreseeable futur... The increases of atmospheric carbon dioxide and other greenhouse gases have caused fundamental changes to the physical and biogeochemical properties of the oceans,and it will continue to occur in the foreseeable future.Based on the outputs of nine Earth System Models from the fifth phase of the Coupled Model Intercomparison Project(CMIP5),in this study,we provided a synoptic assessment of future changes in the sea surface temperature(SST),salinity,dissolved oxygen(DO),seawater pH,and marine net primary productivity(NPP)in the coastal China seas over the 21st century.The results show that the mid-high latitude areas of the coastal China seas(East China Seas(ECS),including the Bohai Sea,Yellow Sea,and East China Sea)will be simultaneously exposed to enhanced warming,deoxygenation,acidification,and decreasing NPP as a consequence of increasing greenhouse gas emissions.The magnitudes of the changes will increase as the greenhouse gas concentrations increase.Under the high emission scenario(Representative Concentration Pathway 8.5),the ECS will experience an SST increase of 3.24±1.23℃,a DO concentration decrease of 10.90±3.92μmol/L(decrease of 6.3%),a pH decline of 0.36±0.02,and a NPP reduction of-17.7±6.2 mg/(m2·d)(decrease of 12.9%)relative to the current levels(1980-2005)by the end of this century.The co-occurrence of these changes and their cascade effects are expected to induce considerable biological and ecological responses,thereby making the ECS among the most vulnerable ocean areas to future climate change.Despite high uncertainties,our results have important implications for regional marine assessments. 展开更多
关键词 coupled model intercomparison project(CMIP5) sea surface temperature(SST) dissolved oxygen(DO) seawater pH net primary productivity
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Projection of precipitation extremes over South Asia from CMIP6 GCMs 被引量:2
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作者 Adnan ABBAS Asher S BHATTI +5 位作者 Safi ULLAH Waheed ULLAH Muhammad WASEEM ZHAO Chengyi DOU Xin Gohar ALI 《Journal of Arid Land》 SCIE CSCD 2023年第3期274-296,共23页
Extreme precipitation events are one of the most dangerous hydrometeorological disasters,often resulting in significant human and socio-economic losses worldwide.It is therefore important to use current global climate... Extreme precipitation events are one of the most dangerous hydrometeorological disasters,often resulting in significant human and socio-economic losses worldwide.It is therefore important to use current global climate models to project future changes in precipitation extremes.The present study aims to assess the future changes in precipitation extremes over South Asia from the Coupled Model Intercomparison Project Phase 6(CMIP6)Global Climate Models(GCMs).The results were derived using the modified Mann-Kendall test,Sen's slope estimator,student's t-test,and probability density function approach.Eight extreme precipitation indices were assessed,including wet days(RR1mm),heavy precipitation days(RR10mm),very heavy precipitation days(RR20mm),severe precipitation days(RR50mm),consecutive wet days(CWD),consecutive dry days(CDD),maximum 5-day precipitation amount(RX5day),and simple daily intensity index(SDII).The future changes were estimated in two time periods for the 21^(st) century(i.e.,near future(NF;2021-2060)and far future(FF;2061-2100))under two Shared Socioeconomic Pathway(SSP)scenarios(SSP2-4.5 and SSP5-8.5).The results suggest increases in the frequency and intensity of extreme precipitation indices under the SSP5-8.5 scenario towards the end of the 21^(st) century(2061-2100).Moreover,from the results of multimodel ensemble means(MMEMs),extreme precipitation indices of RR1mm,RR10mm,RR20mm,CWD,and SDII demonstrate remarkable increases in the FF period under the SSP5-8.5 scenario.The spatial distribution of extreme precipitation indices shows intensification over the eastern part of South Asia compared to the western part.The probability density function of extreme precipitation indices suggests a frequent(intense)occurrence of precipitation extremes in the FF period under the SSP5-8.5 scenario,with values up to 35.00 d for RR1mm and 25.00-35.00 d for CWD.The potential impacts of heavy precipitation can pose serious challenges to the study area regarding flooding,soil erosion,water resource management,food security,and agriculture development. 展开更多
关键词 precipitation extremes extreme precipitation indices climate change coupled model intercomparison project 6(cmip6) Global Climate model(GCM) South Asia
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基于CMIP6模式解析未来水资源变化对引滦入津工程的影响 被引量:1
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作者 王粼昊 张婷 +1 位作者 李建柱 冯平 《水资源与水工程学报》 北大核心 2025年第1期29-39,共11页
为揭示未来水资源变化对引滦入津工程的影响,基于地理空间与水文气象数据,构建了滦河潘家口水库控制流域的SWAT模型。选取4个单项指标和1个综合指标对采用的8个GCMs逐站点进行适用性评估,并依据评估结果进行加权多模式集合,以改进的Delt... 为揭示未来水资源变化对引滦入津工程的影响,基于地理空间与水文气象数据,构建了滦河潘家口水库控制流域的SWAT模型。选取4个单项指标和1个综合指标对采用的8个GCMs逐站点进行适用性评估,并依据评估结果进行加权多模式集合,以改进的Delta-DCSI对气象数据进行降尺度及偏差校正,同时保留了其趋势信号,将修正后的气象数据用于驱动SWAT模型,对未来情景下水资源变化情况进行了模拟预测。结果表明:构建的SWAT模型适用性良好,模式优选后的多模式集合数据精度能够满足驱动SWAT模型进行未来水资源变化预估的要求;未来3种气候情景下径流量年际间变化剧烈,波动起伏较大,总体呈现增大趋势;与1997—2022年相比,潘家口水库入库径流量在未来时期显著增大,流域内水量丰沛,天津市对引滦水量依赖性下降。 展开更多
关键词 水资源 降尺度 cmip6 SWAT模型 引滦入津
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Global air-sea CO_(2) exchange fl ux since 1980s: results from CMIP6 Earth System Models 被引量:1
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作者 Baoxiao QU Jinming SONG +3 位作者 Xuegang LI Huamao YUAN Kun ZHANG Suqing XU 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2022年第4期1417-1436,共20页
The ocean could profoundly modulate the ever-increasing atmospheric CO_(2) by air-sea CO_(2) exchange process,which is also able to cause signifi cant changes of physical and biogeochemical properties in return.In thi... The ocean could profoundly modulate the ever-increasing atmospheric CO_(2) by air-sea CO_(2) exchange process,which is also able to cause signifi cant changes of physical and biogeochemical properties in return.In this study,we assessed the long-term average and spatial-temporal variability of global air-sea CO_(2) exchange fl ux(F CO_(2))since 1980s basing on the results of 18 Coupled Model Intercomparison Project Phase 6(CMIP6)Earth System Models(ESMs).Our fi ndings indicate that the CMIP6 ESMs simulated global CO_(2) sink in recent three decades ranges from 1.80 to 2.24 Pg C/a,which is coincidence with the results of cotemporaneous observations.What’s more,the CMIP6 ESMs consistently show that the global oceanic CO_(2) sink has gradually intensifi ed since 1980s as well as the observations.This study confi rms the simulated F CO_(2) could reach agreements with the observations in the aspect of primary climatological characteristics,however,the simulation skills of CIMP6 ESMs in diverse open-sea biomes are unevenness.None of the 18 CMIP6 ESMs could reproduce the observed F CO_(2) increasement in the central-eastern tropical Pacifi c and the midlatitude Southern Ocean.Defi ciencies of some CMIP6 ESMs in reproducing the atmospheric pressure systems of the Southern Hemisphere and the El Niño-Southern Oscillation(ENSO)mode of the tropical Pacifi c are probably the major causes. 展开更多
关键词 air-sea CO_(2)fl ux coupled model intercomparison project Phase 6(cmip6) Earth System model(ESM) long-term average spatial-temporal variability
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一种偏差校正方法在青藏高原夏季CMIP6降水数据订正中的应用评估 被引量:2
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作者 刘雨萌 赵林 +3 位作者 李照国 王少影 马媛媛 孟宪红 《高原气象》 北大核心 2025年第1期16-31,共16页
利用第六次国际耦合模式比较计划(CMIP6)中的18个模式,基于欧洲中期天气预报中心第五代再分析资料(ERA5)再分析数据对青藏高原夏季降水数据进行了偏差校正,并从平均降水和极端降水两方面评估了校正前后的CMIP6数据以及单个模式在1979-2... 利用第六次国际耦合模式比较计划(CMIP6)中的18个模式,基于欧洲中期天气预报中心第五代再分析资料(ERA5)再分析数据对青藏高原夏季降水数据进行了偏差校正,并从平均降水和极端降水两方面评估了校正前后的CMIP6数据以及单个模式在1979-2014年的表现。研究结果表明,该校正方法高度依赖于用于偏差校正的ERA5再分析数据在研究区域的质量,尽管偏差校正后的青藏高原夏季平均降水的误差和误差率上有所改善,但在年际时间变化特征方面却不如偏差校正前的数据。大多数CMIP6模式能够较好地模拟1979-2014年青藏高原上由西北至东南逐渐递增的平均降水空间变化特征。偏差校正前的降水数据在高原上会出现显著的高估,误差率为60.4%,经过偏差校正后的数据相对观测数据误差降低,误差率为-13.9%,并且偏差校正后的数据与ERA5的平均误差仅为0.003 mm·d^(-1),与ERA5的空间相关性高达0.999。空间趋势方面,观测数据表明青藏高原大部分地区夏季降水在1979-2014年呈现轻微增加的趋势,只有东缘出现明显降低的趋势。偏差校正前后的数据都能够大致刻画出这一空间分布特征,然而,未经偏差校正的大多数单个CMIP6模式与ERA5的空间相关系数未超过0.5。与由独立观测降水数据的年际变化特征相比,偏差校正前的数据高估了高原上的降水量,而偏差校正后的数据相比观测结果则偏低。通过确定95%分位阈值选取了极端降水个例,其集合平均极端降水空间分布与年平均降水类似,也呈西北向东南递增的趋势。部分CMIP6模式较好地模拟了这一特征,如MRI-ESM2-0(The Meteorological Research Institute Earth System Model version 2.0)和ACCESSCM2(Australian Community Climate and Earth System Simulator Climate Model Version 2),与观测结果的空间相关系数分别为0.851和0.821。但偏差校正后的数据在空间相关性方面下降,由偏差校正前的0.861降为0.730,未能准确刻画高原极端降水阶梯式递增的特点。偏差校正后的极端降水数据误差分布与偏差校正前相似,偏低区域主要集中在高原南部腹地和东部。进一步的极端降水贡献率分析结果表明,观测结果与CMIP6降水数据均显示1979-2014年期间极端降水贡献率变化趋势不明显。单个CMIP6模式中,EC-Earth3-Veg(European Community Earth-Vegetation model version 3)和EC-Earth3(European Community Earth Model version 3)及CanESM5(The Canadian Earth System Model version 5)在多个统计评估指标上排名靠前,展示出较好的模拟能力;IPSL-CM6A-LR(Institut Pierre-Simon Laplace Climate Model 6A Low Resolution)在平均降水误差和极端降水的误差指标上表现出色。 展开更多
关键词 青藏高原 第六次国际耦合模式比较计划(cmip6) 偏差校正 降水
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Variability of the Pacific subtropical cells under global warming in CMIP6 models
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作者 Xue HAN Junqiao FENG +1 位作者 Yunlong LU Dunxin HU 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2024年第1期24-40,共17页
The Pacific subtropical cells(STCs)are shallow meridional overturning circulations connecting the tropics and subtropics,and are assumed to be an important driver of the tropical Pacific decadal variability.The variab... The Pacific subtropical cells(STCs)are shallow meridional overturning circulations connecting the tropics and subtropics,and are assumed to be an important driver of the tropical Pacific decadal variability.The variability of STCs under global warming is investigated using multimodal outputs from the latest phase of the Coupled Model Inter-comparison Project(CMIP6)and ocean reanalysis products.Firstly,the volume transport diagnostic analysis is employed to evaluate how coupled models and ocean reanalysis products reproduce interior STC transport.The variation of heat transport by the interior STC under the high-emissions warming scenarios is also analyzed.The results show that the multimodal-mean linear trends of the interior STC transport along 9°S and 9°N are-0.02 Sv/a and 0.04 Sv/a under global warming,respectively,which is mainly due to the combined effect of the strengthened upper oceanic stratification and the weakening of wind field.There is a compensation relationship between the interior STC and the western boundary transport in the future climate,and the compensation relationship of 9°S is more significant than that of 9°N.In addition,compared with ocean reanalysis products,the coupled models tend to underestimate the variability of the interior STC transport convergence,and thus may lose some sea surface temperature(SST)driving force,which may be the reason for the low STC-SST correlation simulated by the model.The future scenario simulation shows that the heat transport of interior STC is weakened under global warming,with a general agreement across models. 展开更多
关键词 interior subtropical cell(STC) global warming coupled model Inter-comparison project(cmip6) western boundary transport
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岩溶区径流与水文干旱预估——以赤水河上游流域为例
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作者 向军 倪福全 +3 位作者 康文东 江楠 吴明炎 岳紫莹 《水生态学杂志》 北大核心 2026年第1期37-48,共12页
探究未来赤水河上游流域径流及水文干旱变化趋势,为流域生态保护、水资源管理和旱涝灾害防控提供科学依据。基于赤水河上游2000—2019年气象水文数据等构建SWAT模型,并用第六次国际耦合模式比较计划CMIP6的5个气候模式数据,结合标准化... 探究未来赤水河上游流域径流及水文干旱变化趋势,为流域生态保护、水资源管理和旱涝灾害防控提供科学依据。基于赤水河上游2000—2019年气象水文数据等构建SWAT模型,并用第六次国际耦合模式比较计划CMIP6的5个气候模式数据,结合标准化径流指数和游程理论,预估未来(2020—2060年)2种情景气候、径流和水文干旱变化情况。结果表明:(1)茅台站月径流率定期和验证期的决定系数(R2)与纳什系数(NSE)均达到0.8以上,表明SWAT模型在该流域有较好的适用性;(2)流域未来暖湿化趋势明显,SSP1-2.6情景降水量增幅约10%,气温上升速率为0.02℃/a,SSP5-8.5情景降水量增幅大于20%,气温上升速率为0.05℃/a;(3)SSP1-2.6、SSP5-8.5情景年径流增加速率分别为0.09亿m3/a、0.15亿m3/a,前者月流量枯丰期均增加且增幅不超过15%,后者月流量丰水期增幅10%~20%,枯水期减少15%~30%;(4)SSP1-2.6情景水文干旱频率减小,春冬季偶有干旱发生;SSP5-8.5情景水文干旱略微增加,其中春冬季发生干旱的几率均增大。 展开更多
关键词 第六次国际耦合模式比较计划 径流预估 水文干旱预估 SWAT模型 岩溶区 赤水河上游流域
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CMIP6模式对中国东部地区水循环的模拟能力评估 被引量:9
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作者 赵丹 张丽霞 周天军 《大气科学》 CSCD 北大核心 2022年第3期557-572,共16页
本文基于观测和再分析资料,采用Brubaker二元模型评估了第六次国际耦合模式比较计划(CMIP6)中19个模式对中国东部季风区气候态水循环过程的模拟能力,并分析了模拟误差来源。结果表明,CMIP6模式集合平均(MME)能够合理再现观测降水和蒸发... 本文基于观测和再分析资料,采用Brubaker二元模型评估了第六次国际耦合模式比较计划(CMIP6)中19个模式对中国东部季风区气候态水循环过程的模拟能力,并分析了模拟误差来源。结果表明,CMIP6模式集合平均(MME)能够合理再现观测降水和蒸发的年平均气候态空间分布及年循环特征,与观测值的空间相关系数分别为0.92和0.87。较之观测,MME高估了华北地区降水(0.55 mm d^(−1)),低估了华南沿海地区降水(−0.3 mm d^(−1))。所有CMIP6模式均高估蒸发强度(偏差0.03~0.98 mm d^(−1)),使得模拟的降水与蒸发之差偏少。模式整体能够模拟出我国东部季风区降水再循环率及不同边界水汽来源的贡献率,但低估了由南边界进入季风区的水汽贡献,导致东亚季风区偏干。通过分析模式对影响水汽通量的两个气象要素(风速和大气比湿)的模拟能力,发现研究区南边界的风速大小决定了模式间水汽输送差异。南边界风速越大的模式,由南边界进入的水汽通量越大,模式模拟的降水越多。西北太平洋辐合带的东西位置是影响南边界南风速的重要系统之一,辐合带位置偏东的模式模拟的南风强度较弱,使得水汽输送偏弱、降水偏少;反之,南边界水汽输送偏强、降水偏多。本文通过评估最新一代CMIP6模式在东亚水循环方面的模拟性能,指出了当前气候模式在模拟西太平洋辐合带位置方面存在的偏差及其对东亚水循环的影响。 展开更多
关键词 cmip6(coupled model intercomparison project Phase 6) 季风 水循环 降水再循环率 水汽输送
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基于CMIP6的中国主要地区极端气温/降水模拟能力评估及未来情景预估 被引量:81
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作者 向竣文 张利平 +2 位作者 邓瑶 佘敦先 张琴 《武汉大学学报(工学版)》 CAS CSCD 北大核心 2021年第1期46-57,81,共13页
基于耦合模式比较计划第6阶段(the coupled model intercomparison program in phase 6,CMIP6)的全球气候模式模拟数据,评估分析了全球气候模式对中国主要地区1979―2014年极端气温与极端降水特征的模拟能力。通过泰勒图及各种统计参数... 基于耦合模式比较计划第6阶段(the coupled model intercomparison program in phase 6,CMIP6)的全球气候模式模拟数据,评估分析了全球气候模式对中国主要地区1979―2014年极端气温与极端降水特征的模拟能力。通过泰勒图及各种统计参数的对比表明,全球气候模式对中国各个地区的极端降水/气温的模拟存在显著差异,对中国地区极端气温与降水模拟最好的模式是EC-Earth3。对EC-Earth3在4种未来情景下的气温/降水数据进行偏差校正,并对中国地区未来时期极端降水/气温进行了预估。结果表明:2021—2100年,中国地区升温趋势和极端降水的增加趋势显著,4种情景下的极端气温指标和极端降水指标在21世纪50年代之前是相似的,但之后变化趋势差异增加;SSP1-2.6情景下,2021—2100年升温速率和极端降水速率增加趋势较为平缓;SSP2-4.5、SSP3-7.0、SSP5-8.53种情景下,升温速率和极端降水增加速率随着模式和时间增加逐渐增大。 展开更多
关键词 全球气候模式 耦合模式比较计划第6阶段(cmip6) 极端降水/气温 模拟性能 未来预估
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CMIP6与CMIP5对历史大气层顶和地表辐射收支模拟的时空对比 被引量:4
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作者 万梓文 王伟 +3 位作者 吕恒 仇培宇 李雨竹 卢阳 《气候变化研究进展》 CSCD 北大核心 2022年第4期468-481,共14页
基于云和地球辐射能量系统观测数据集(CERES),对比分析了耦合模式比较计划第五(CMIP5)和第六阶段(CMIP6)模拟的历史大气层顶和地表辐射收支的年际变化和空间分布,明确了多模式间不确定性大的关键区域。结果表明:在年际尺度上,除地表向... 基于云和地球辐射能量系统观测数据集(CERES),对比分析了耦合模式比较计划第五(CMIP5)和第六阶段(CMIP6)模拟的历史大气层顶和地表辐射收支的年际变化和空间分布,明确了多模式间不确定性大的关键区域。结果表明:在年际尺度上,除地表向上长波辐射外,CMIP6的辐射分量的集合均值较CMIP5更接近于CERES观测值,全球地表向下短波辐射的高估和大气逆辐射的低估在CMIP6中分别降低了1.9 W/m~2和3.3 W/m~2。除大气逆辐射外,CMIP6的辐射分量在多模式间的一致性较CMIP5提高。在北极,CMIP6对大气层顶反射短波、大气层顶出射长波和地表向下短波辐射的模拟偏差较CMIP5大。在南北纬60°,CMIP6对大气逆辐射的模拟偏差较CMIP5大。其他区域CMIP6的辐射分量更接近CERES观测值。CMIP6模拟的地表向下短波辐射和大气逆辐射的不确定性较大区域面积较CMIP5减小,但不确定性极大区域面积无变化。地表净辐射的不确定性空间分布在两代CMIP间变化甚小。青藏高原、赤道太平洋、热带雨林、阿拉伯半岛和南极洲沿海依然是地球系统模式模拟辐射收支不确定性极大的关键区域。 展开更多
关键词 地球系统模式 耦合模式比较计划(CMIP) 辐射收支 大气层顶(TOA) 地表 模式间不确定性
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Development of Earth/Climate System Models in China:A Review from the Coupled Model Intercomparison Project Perspective 被引量:3
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作者 周天军 邹立维 +4 位作者 吴波 金晨曦 宋丰飞 陈晓龙 张丽霞 《Journal of Meteorological Research》 SCIE 2014年第5期762-779,共18页
The development of coupled earth/climate system models in China over the past 20 years is reviewed, including a comparison with other international models that participated in the Coupled Model Intercom- parison Proje... The development of coupled earth/climate system models in China over the past 20 years is reviewed, including a comparison with other international models that participated in the Coupled Model Intercom- parison Project (CMIP) from phase 1 (CMIP1) to phase 4 (CMIP4). The Chinese contribution to CMIP is summarized, and the major achievements from CMIP1 to CMIP3 are listed as a reference for assessing the strengths and weaknesses of Chinese models. After a description of CMIP5 experiments, the five Chinese models that participated in CMIP5 are then introduced. Furthermore, following a review of the current status of international model development, both the challenges and opportunities for the Chinese climate modeling community are discussed. The development of high-resolution climate models, earth system mod- els, and improvements in atmospheric and oceanic general circulation models, which are core components of earth/climate system models, are highlighted. To guarantee the sustainable development of climate system models in China, the need for national-level coordination is discussed, along with a list of the main compo- nents and supporting elements identified by the US National Strategy for Advancing Climate Modeling. 展开更多
关键词 coupled model intercomparison project (CMIP) IPCC Assessment Report atmospheric gen-general circulation model oceanic general circulation model climate system model earth sys-tem model high-resolution model
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A CMIP6-based assessment of regional climate change in the Chinese Tianshan Mountains 被引量:1
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作者 LIU Xinyu LI Xuemei +2 位作者 ZHANG Zhengrong ZHAO Kaixin LI Lanhai 《Journal of Arid Land》 SCIE CSCD 2024年第2期195-219,共25页
Climate warming profoundly affects hydrological changes,agricultural production,and human society.Arid and semi-arid areas of China are currently displaying a marked trend of warming and wetting.The Chinese Tianshan M... Climate warming profoundly affects hydrological changes,agricultural production,and human society.Arid and semi-arid areas of China are currently displaying a marked trend of warming and wetting.The Chinese Tianshan Mountains(CTM)have a high climate sensitivity,rendering the region particularly vulnerable to the effects of climate warming.In this study,we used monthly average temperature and monthly precipitation data from the CN05.1 gridded dataset(1961-2014)and 24 global climate models(GCMs)of the Coupled Model Intercomparison Project Phase 6(CMIP6)to assess the applicability of the CMIP6 GCMs in the CTM at the regional scale.Based on this,we conducted a systematic review of the interannual trends,dry-wet transitions(based on the standardized precipitation index(SPI)),and spatial distribution patterns of climate change in the CTM during 1961-2014.We further projected future temperature and precipitation changes over three terms(near-term(2021-2040),mid-term(2041-2060),and long-term(2081-2100))relative to the historical period(1961-2014)under four shared socio-economic pathway(SSP)scenarios(i.e.,SSP1-2.6,SSP2-4.5,SSP3-7.0,and SSP5-8.5).It was found that the CTM had experienced significant warming and wetting from 1961 to 2014,and will also experience warming in the future(2021-2100).Substantial warming in 1997 was captured by both the CN05.1 derived from interpolating meteorological station data and the multi-model ensemble(MME)from the CMIP6 GCMs.The MME simulation results indicated an apparent wetting in 2008,which occurred later than the wetting observed from the CN05.1 in 1989.The GCMs generally underestimated spring temperature and overestimated both winter temperature and spring precipitation in the CTM.Warming and wetting are more rapid in the northern part of the CTM.By the end of the 21st century,all the four SSP scenarios project warmer and wetter conditions in the CTM with multiple dry-wet transitions.However,the rise in precipitation fails to counterbalance the drought induced by escalating temperature in the future,so the nature of the drought in the CTM will not change at all.Additionally,the projected summer precipitation shows negative correlation with the radiative forcing.This study holds practical implications for the awareness of climate change and subsequent research in the CTM. 展开更多
关键词 climate change coupled model intercomparison project Phase 6(cmip6) global climate models(GCMs) shared socio-economic pathway(SSP)scenarios standardized precipitation index(SPI) Chinese Tianshan Mountains
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基于CMIP6气候变化情景下南极小须鲸(Balaenoptera bonaerensis)在宇航员海栖息地变化分析 被引量:2
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作者 蔺诗颖 赵亮 +1 位作者 刘璐璐 冯建龙 《海洋与湖沼》 CAS CSCD 北大核心 2023年第2期387-398,共12页
南极小须鲸(Balaenopterabonaerensis)作为顶级捕食者,在南大洋生态系统中起着重要调节作用。目前对南极小须鲸的研究大多集中在捕食和季节性迁移上,在栖息地分布以及气候变化对栖息地影响方面研究亟待补充。基于MaxEnt模型和CMIP6的数... 南极小须鲸(Balaenopterabonaerensis)作为顶级捕食者,在南大洋生态系统中起着重要调节作用。目前对南极小须鲸的研究大多集中在捕食和季节性迁移上,在栖息地分布以及气候变化对栖息地影响方面研究亟待补充。基于MaxEnt模型和CMIP6的数据,分析了当前情形以及不同排放情景下,到21世纪中期和21世纪末期宇航员海南极小须鲸栖息地的分布和变化。研究结果表明,南极小须鲸主要分布在宇航员海的东部,当前的高度适生区占整个区域的13.96%。深度、海冰密集度和混合层深度最小值是南极小须鲸分布的主要影响因子,三者的累积贡献为60.5%。气候变化情景下南极小须鲸栖息地呈现缩小的趋势。高排放情景下南极小须鲸的栖息地面积减小更快,从21世纪中期到末期这个时期南极小须鲸的栖息地面积减小速率比从当前到21世纪中期快。到本世纪中期,所有情景下的宇航员海东部仍存在南极小须鲸的栖息地;到本世纪末,中排放情景和高排放情景下的宇航员海已不适合南极小须鲸生存,海冰密集度的减小是造成这一现象的主要原因。 展开更多
关键词 南极小须鲸 气候变化 宇航员海 栖息地 第六次国际耦合模式比较计划(cmip6)
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CMIP 6 models simulation of the connection between North/South Pacific Meridional Mode and ENSO 被引量:1
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作者 Yunlong LU Junqiao FENG Dunxin HU 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2024年第2期439-453,共15页
The subtropical North and South Pacific Meridional Modes(NPMM and SPMM)are well known precursors of El Niño-Southern Oscillation(ENSO).However,relationship between them is not constant.In the early 1980,the relat... The subtropical North and South Pacific Meridional Modes(NPMM and SPMM)are well known precursors of El Niño-Southern Oscillation(ENSO).However,relationship between them is not constant.In the early 1980,the relationship experienced an interdecadal transition.Changes in this connection can be attributed mainly to the phase change of the Pacific decadal oscillation(PDO).During the positive phase of PDO,a shallower thermocline in the central Pacific is responsible for the stronger trade wind charging(TWC)mechanism,which leads to a stronger equatorial subsurface temperature evolution.This dynamic process strengthens the connection between NPMM and ENSO.Associated with the negative phase of PDO,a shallower thermocline over southeastern Pacific allows an enhanced wind-evaporation-SST(WES)feedback,strengthening the connection between SPMM and ENSO.Using 35 Coupled Model Intercomparison Project Phase 6(CMIP6)models,we examined the NPMM/SPMM performance and its connection with ENSO in the historical runs.The great majority of CMIP6 models can reproduce the pattern of NPMM and SPMM well,but they reveal discrepant ENSO and NPMM/SPMM relationship.The intermodal uncertainty for the connection of NPMM-ENSO is due to different TWC mechanism.A stronger TWC mechanism will enhance NPMM forcing.For SPMM,few models can simulate a good relationship with ENSO.The intermodel spread in the relationship of SPMM and ENSO owing to SST bias in the southeastern Pacific,as WES feedback is stronger when the southeastern Pacific is warmer. 展开更多
关键词 North and South Pacific Meridional Modes(NPMM and SPMM) El Niño-Southern Oscillation(ENSO) Pacific decadal oscillation(PDO) coupled model intercomparison project Phase 6(cmip6)
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An assessment of the CMIP5 models in simulating the Argo geostrophic meridional transport in the North Pacifi c Ocean
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作者 LI Xiang YUAN Dongliang 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2020年第5期1445-1463,共19页
Eleven climate system models that participate in the Coupled Model Intercomparison Project phase 5(CMIP5)were evaluated based on an assessment of their simulated meridional transports in comparison with the Sverdrup t... Eleven climate system models that participate in the Coupled Model Intercomparison Project phase 5(CMIP5)were evaluated based on an assessment of their simulated meridional transports in comparison with the Sverdrup transports.The analyses show that the simulated North Pacifi c Ocean circulation is essentially in Sverdrup balance in most of the 11 models while the Argo geostrophic meridional transports indicate signifi cant non-Sverdrup gyre circulation in the tropical North Pacifi c Ocean.The climate models overestimated the observed tropical and subtropical volume transports signifi cantly.The non-Sverdrup gyre circulation leads to non-Sverdrup heat and salt transports,the absence of which in the CMIP5 simulations suggests defi ciencies of the CMIP5 model dynamics in simulating the realistic meridional volume,heat,and salt transports of the ocean. 展开更多
关键词 coupled model intercomparison project phase 5(CMIP5)models Sverdrup balance meridional transport Argo geostrophic currents
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国际耦合模式比较计划地球模拟数据全球共享体系分析
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作者 刘昱甫 白玉琪 《自然资源遥感》 北大核心 2025年第6期10-21,共12页
国际耦合模式比较计划(Coupled Model Intercomparison Project, CMIP)第六阶段(CMIP6)作为支撑全球气候研究和联合国政府间气候变化专门委员会(Intergovernmental Panel on Climate Change, IPCC)评估报告的重要科学计划,其数据规模已... 国际耦合模式比较计划(Coupled Model Intercomparison Project, CMIP)第六阶段(CMIP6)作为支撑全球气候研究和联合国政府间气候变化专门委员会(Intergovernmental Panel on Climate Change, IPCC)评估报告的重要科学计划,其数据规模已增长至PB级别,对数据管理与共享提出了更高要求。地球系统网格联盟(Earth System Grid Federation, ESGF)作为CMIP6官方指定的全球分布式数据基础设施,构建了一套覆盖数据全生命周期的软件体系,实现了从模式输出、质量控制、规范存储到全球分发的完整流程。该文系统介绍了ESGF的系统架构、节点组成与数据管理方法,重点阐述了其在CMIP6数据发布、元数据管理、版本控制、数据引用与服务质量监测等方面的关键机制。研究表明,ESGF在支持CMIP6数据全球共享中发挥了核心作用,我国也在其中积极参与并作出重要贡献;尽管ESGF在网络性能和服务均衡性方面仍面临挑战,但其正在向集成在线分析与近数据计算的新一代服务平台演进,为地球系统科学数据共享提供更加高效和可持续的支撑。 展开更多
关键词 国际耦合模式比较计划 地球系统网格联盟 气候模式数据 数据共享
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Future Drought Changes in China Projected by the CMIP6 Models:Contributions from Key Factors 被引量:3
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作者 Qingxin CHEN Tianbao ZHAO +3 位作者 Lijuan HUA Jinhua YU Yafang WANG Chuan XU 《Journal of Meteorological Research》 SCIE CSCD 2023年第4期454-468,共15页
Model simulations show that drought may become more severe and widespread in the 21st century due to humaninduced global warming. However, the contributions from the key factors to the model-projected drought changes ... Model simulations show that drought may become more severe and widespread in the 21st century due to humaninduced global warming. However, the contributions from the key factors to the model-projected drought changes in China have not yet been examined in detail. We used the self-calibrated Palmer Drought Severity Index with Penman–Monteith potential evapotranspiration(scPDSIpm) based on 10 model simulations selected from the Coupled Model Intercomparison Project Phase 6(CMIP6). We investigated the contributions from precipitation(P), near-surface air temperature and specific humidity [Δ(T + q)], net surface longwave radiation(LW), net surface shortwave radiation(SW), and wind speed(WS) to the future changes in scPDSIpm, including the long-term mean, drying area,probability distribution function(PDF), drought frequency, and drought duration based on the scPDSIpm over China.Our results show that model-projected drying mainly occurs over southern China, whereas the dry areas under drought conditions increase from 20% to about 23%/30% under the two scenarios of the shared socioeconomic pathway(SSP2-4.5/SSP5-8.5) from 1985 to 2100, despite large uncertainties in individual projections partly due to internal variability. Drought frequency is projected to increases by about 10%–54%(15%–88%) under the SSP2-4.5(SSP5-8.5) scenario by the late 21st century, along with increases in drought duration. These changes are accompanied by a decrease in the mean scPDSIpm and flattening of the PDFs. The changes in drying over southern China are mainly attributed to surface warming and the increased surface vapor pressure deficit(VPD), with small contributions from changes in the surface net radiation. The changes in wetting over northern China mostly result from increased precipitation along with a small wetting effect from the changes in wind speed. 展开更多
关键词 DROUGHT future projection key factors China coupled model intercomparison project Phase 6
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