首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >30-Arcsecond monthly climate surfaces with global land coverage
【24h】

30-Arcsecond monthly climate surfaces with global land coverage

机译:每月30弧秒的气候面,覆盖全球

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Monthly total precipitation and mean temperature climate surfaces, gridded to 30-arcseconds (≈1km at the equator) and available for all global land areas, are presented. These datasets are generated with a Delta downscaling method, using the 30-arcsecond WorldClim climatologies to scale monthly anomaly grids. For monthly mean temperature, the anomalies are constructed from both the Climate Research Unit (CRU) and Willmott & Matsuura (W&M) 0.5 degree time-series datasets, whereas for monthly precipitation Global Precipitation Climatology Centre (GPCC) data are also used. The 0.5 degree anomalies are then interpolated to the 30-arcsecond resolution. Use of piecewise cubic Hermite interpolating polynomials (PCHIP) to interpolate the anomaly grids results in more physically representative Delta downscaled surfaces, compared to bilinear and cubic spline interpolation. The Delta downscaled products are compared to Global Historical Climatology Network (GHCN) station records for six test regions distributed globally. In this analysis, the Delta grids produced using the W&M time-series dataset perform better than grids produced using GPCC or CRU. Using Oregon, USA as a test region, the Delta downscaled datasets are compared to the Parameter-elevation Regressions on Independent Slopes Model (PRISM) datasets. For monthly precipitation, PRISM performs better than each of the three Delta downscaled datasets, but for mean temperature both Delta downscaled datasets outperform PRISM. Through computing the Pearson product-moment correlation coefficient between GHCN station delineated errors in the WorldClim climatologies and the Delta downscaled W&M data, it is shown that performance of the Delta grids corresponds strongly to performance of the reference climatologies. Therefore, future improvement of the 30-arcsecond Delta grids described in this article is strongly tied to advances in the high-resolution climatological data for all global land surfaces. The Delta downscaled datasets discussed herein are open-source and freely distributed at http://www.globalclimatedata.org.
机译:给出了每月总降水量和平均温度气候面,网格为30秒(在赤道处约为1公里),可用于全球所有陆地区域。这些数据集是使用Delta降尺度方法生成的,使用30秒钟的WorldClim气候来缩放每月异常网格。对于月平均温度,从气候研究部门(CRU)和Willmott&Matsuura(W&M)0.5度时间序列数据集构建异常,而对于月降水,还使用全球降水气候中心(GPCC)数据。然后将0.5度异常插值到30秒分辨率。与双线性样条和三次样条插值相比,使用分段三次Hermite插值多项式(PCHIP)插值异常网格会导致在物理上更具代表性的Delta缩小表面。将Delta降级后的产品与全球分布在六个测试区域的全球历史气候学网络(GHCN)站记录进行比较。在此分析中,使用W&M时间序列数据集生成的Delta网格要比使用GPCC或CRU生成的网格更好。使用美国俄勒冈州作为测试区域,将Delta缩减数据集与“独立坡度模型上的参数高程回归”(PRISM)数据集进行了比较。对于月降水量,PRISM的效果要优于三个Delta缩减数据集,但对于平均气温,两个Delta缩减数据集的性能均优于PRISM。通过计算WorldClim气候中GHCN站描绘的误差与Delta降尺度的W&M数据之间的皮尔逊乘积矩相关系数,可以看出Delta网格的性能与参考气候的性能强烈对应。因此,本文所述的30弧形Delta网格的未来改进与所有全球陆地表面高分辨率气候数据的发展紧密相关。本文讨论的Delta缩减数据集是开源的,可在http://www.globalclimatedata.org上免费分发。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号