A high-resolution downscaled CMIP5 projections dataset of essential surface climate variables over the globe coherent with the ERA5 reanalysis for climate change impact assessments

被引:16
|
作者
Noel, Thomas [1 ]
Loukos, Harilaos [1 ]
Defrance, Dimitri [1 ]
Vrac, Mathieu [2 ]
Levavasseur, Guillaume [3 ]
机构
[1] Climate Data Factory, Paris, France
[2] Univ Paris Saclay, Orme Merisiers, Ctr Etud Saclay, Lab Sci Climat & Environm LSCE IPSL,CEA CNRS UVSQ, F-91191 Gif Sur Yvette, France
[3] SU CNRS, Inst Pierre Simon Laplace, Paris, France
来源
DATA IN BRIEF | 2021年 / 35卷
关键词
High-resolution; Projections; CMIP5; ERA5; Downscaling; Climate change; Adaptation; Impact modeling; BIAS; MODEL;
D O I
10.1016/j.dib.2021.106900
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A high-resolution climate projections dataset is obtained by statistically downscaling climate projections from the CMIP5 experiment using the ERA5 reanalysis from the Copernicus Climate Change Service. This global dataset has a spatial resolution of 0.25 degrees x 0.25 degrees, comprises 21 climate models and includes 5 surface daily variables at monthly resolution: air temperature (mean, minimum, and maximum), precipitation, and mean near-surface wind speed. Two greenhouse gas emissions scenarios are available: one with mitigation policy (RCP4.5) and one without mitigation (RCP8.5). The downscaling method is a Quantile Mapping method (QM) called the Cumulative Distribution Function transform (CDF-t) method that was first used for wind values and is now referenced in dozens of peer-reviewed publications. The data processing includes quality control of metadata according to the climate modeling community standards and value checking for out-lier detection. (C) 2021 The Authors. Published by Elsevier Inc.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Asymmetry of Surface Climate Change under RCP2.6 Projections from the CMIP5 Models
    辛晓歌
    程彦杰
    汪方
    吴统文
    张洁
    AdvancesinAtmosphericSciences, 2013, 30 (03) : 796 - 805
  • [22] Ensemble mean of CMIP5 Sea Surface Temperature projections under climate change and their reference climatology
    Combal, Bruno
    Fischer, Albert
    INTERNATIONAL JOURNAL OF SPATIAL DATA INFRASTRUCTURES RESEARCH, 2016, 11 : 1 - 8
  • [23] Asymmetry of surface climate change under RCP2.6 projections from the CMIP5 models
    Xin Xiaoge
    Cheng Yanjie
    Wang Fang
    Wu Tongwen
    Zhang Jie
    ADVANCES IN ATMOSPHERIC SCIENCES, 2013, 30 (03) : 796 - 805
  • [24] Asymmetry of surface climate change under RCP2.6 projections from the CMIP5 models
    Xiaoge Xin
    Yanjie Cheng
    Fang Wang
    Tongwen Wu
    Jie Zhang
    Advances in Atmospheric Sciences, 2013, 30 : 796 - 805
  • [25] Evaluation of CMIP5 climate model projections for surface wind speed over the Indian Ocean region
    Soumya Mohan
    Prasad K. Bhaskaran
    Climate Dynamics, 2019, 53 : 5415 - 5435
  • [26] Evaluation of CMIP5 climate model projections for surface wind speed over the Indian Ocean region
    Mohan, Soumya
    Bhaskaran, Prasad K.
    CLIMATE DYNAMICS, 2019, 53 (9-10) : 5415 - 5435
  • [27] Climate change projections over China using regional climate models forced by two CMIP5 global models. Part II: projections of future climate
    Hui, Pinhong
    Tang, Jianping
    Wang, Shuyu
    Niu, Xiaorui
    Zong, Peishu
    Dong, Xinning
    INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2018, 38 : E78 - E94
  • [28] Historical Climate Trends over High Mountain Asia Derived from ERA5 Reanalysis Data
    Khanal, S.
    Tiwari, S.
    Lutz, A. F.
    Hurk, B. V. D.
    Immerzeel, W. W.
    JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2023, 62 (02) : 263 - 288
  • [29] High-resolution boreal winter precipitation projections over tropical America from CMIP5 models
    Palomino-Lemus, Reiner
    Cordoba-Machado, Samir
    Raquel Gamiz-Fortis, Sonia
    Castro-Diez, Yolanda
    Jesus Esteban-Parra, Maria
    CLIMATE DYNAMICS, 2018, 51 (5-6) : 1773 - 1792
  • [30] High-resolution boreal winter precipitation projections over tropical America from CMIP5 models
    Reiner Palomino-Lemus
    Samir Córdoba-Machado
    Sonia Raquel Gámiz-Fortis
    Yolanda Castro-Díez
    María Jesús Esteban-Parra
    Climate Dynamics, 2018, 51 : 1773 - 1792