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Reconstructing high-resolution temperature for the past 40 years in the Tianshan Mountains, China based on the Earth system data products

机译:基于地球系统数据产品,在天山山区重建了高分辨率温度。基于地球系统数据产品

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摘要

The impacts of climate change on runoff and water resources have been widely concerned. Meteorological stations and observation data are very limited in the mountainous areas of Northwest China, thus challenging accurate hydrological forecasting and water resource evaluation. To address this issue, we developed a method to reconstruct high-resolution temperatures in mountainous areas. Based on the ERA-Interim temperature and high resolution DEM, nonlinear regression models were fitted and corrected via bilinear interpolation. Using the developed method, monthly temperatures from January 1979 to August 2019 with a spatial resolution of 90 m x 90 m were reconstructed and then verified against observations from 30 meteorological stations. The verification results indicate the high accuracy of the reconstructed data. Based on the reconstructions, we found that over the past 40 years, annual mean temperatures in the Tianshan Mountains had increased by 0.3 degrees C per decade. The highest annual mean temperature of 8.32 degrees C was found in East Tianshan (87 degrees 47 ' E-96 degrees E), followed by 5.21 degrees C in West Tianshan (73 degrees E-80 degrees E), and 3.62 degrees C in Middle Tianshan (80 degrees E-87 degrees 47 ' E). Altitude is the main factor affecting the spatial distribution of temperature in the study region. We also simulated runoff in the Aksu River and the Kaidu River, both of which originate from the Tianshan Mountains, using reconstructed temperature data. Comparing the accuracy of the simulated runoff with that of simulated using the observed temperature and the raw ERA-Interim temperature data revealed that the simulated runoff using our reconstructions showed the highest accuracy.
机译:气候变化对径流和水资源的影响得到了广泛的关注。气象站和观察数据在中国西北部的山区非常有限,因此挑战准确的水文预测和水资源评估。为了解决这个问题,我们开发了一种在山区重建高分辨率温度的方法。基于ERA-INTERIM温度和高分辨率DEM,通过双线性插值装配和校正非线性回归模型。使用开发的方法,重建了1979年1月至2019年8月的月度温度,重建了90米×90米的空间分辨率,然后验证了来自30个气象站的观察结果。验证结果表明重建数据的高精度。基于重建,我们发现,在过去的40年中,天山山脉的年平均温度增加了0.3摄氏度。在东天山(87度47'E-96摄氏度)发现最高的8.32摄氏度的最高平均温度,其次是西天山(73摄氏度)的5.21摄氏度(73摄氏度)和3.62摄氏度天山(80级E-87度47'e)。高度是影响研究区温度空间分布的主要因素。我们还在Aksu河和Kaidu河中模拟了径流,两者都来自天山山脉,使用重建的温度数据。使用观察到的温度和原始时代温度数据进行模拟径流的准确性,显示使用我们的重建模拟径流显示最高的精度。

著录项

  • 来源
    《Atmospheric research》 |2021年第5期|105493.1-105493.15|共15页
  • 作者单位

    East China Normal Univ Sch Geog Sci Minist Educ Key Lab Geog Informat Sci Shanghai 200241 Peoples R China|East China Normal Univ Res Ctr East West Cooperat China Shanghai 200241 Peoples R China;

    East China Normal Univ Sch Geog Sci Minist Educ Key Lab Geog Informat Sci Shanghai 200241 Peoples R China|East China Normal Univ Res Ctr East West Cooperat China Shanghai 200241 Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol & Geog State Key Lab Desert & Oasis Ecol Urumqi 830011 Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol & Geog State Key Lab Desert & Oasis Ecol Urumqi 830011 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Temperature; Modelling; Reconstructing; High resolution; Tianshan Mountains; Northwest China;

    机译:温度;建模;重建;高分辨率;天山山;西北;

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