网格气象数据集在典型的数据稀缺的冰冻圈盆地中表现如何?

IF 6.4 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES
Ya-Ping Chang , Dong-Hui Shangguan , Yong-Jian Ding , Shi-Qiang Zhang , Qiu-Dong Zhao , Jie Wang
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引用次数: 0

摘要

网格化气象数据集已广泛应用于气象和水文研究,特别是在数据匮乏的地区。然而,对这些对全球变暖高度敏感的冰冻圈盆地数据集的评估仍然不足。为此,利用中国气象强迫数据集(CMFD)、CN05.1和第三极区气象强迫数据集(TPMFD) 3个具有代表性的网格化气象数据集,通过有限量程观测对比、两两互比较和水文模拟,对Nachitai流域的气象强迫进行了系统评价。所有格点降水和温度数据集与年际尺度的实测数据吻合较好,但在年尺度上降水和温度数据集之间存在较大差异。此外,两两相关分析表明,数据集的时间一致性高于空间一致性。此外,这三个数据集作为水文-水动力模型的输入,在模拟冰川面积和流量变化方面都取得了令人满意和合理的结果,显示了该模型在数据稀缺的盆地中的鲁棒性。该研究为网格化数据在青藏高原数据稀缺地区的意义提供了更深刻的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How do gridded meteorological datasets perform in a typical data-scarce cryospheric basin?
Gridded meteorological datasets have been widely used in meteorological and hydrological studies, especially in data-scarce regions. However, assessments of these datasets in cryospheric basins, which are highly sensitive to global warming, remain inadequate. Therefore, three representative gridded meteorological datasets, i.e., the China meteorological forcing dataset (CMFD), CN05.1, and the meteorological forcing dataset for the third-pole region (TPMFD), were systematically evaluated in the Nachitai Basin based on comparisons with limited gauge observations, pairwise intercomparisons, and hydrological simulations. All gridded precipitation and temperature datasets were in good agreement with gauge observations on an intra-annual scale, while substantial differences existed among them in terms of precipitation and temperature on an annual scale. Additionally, pairwise correlation analyses indicated that the temporal consistency between the datasets was higher than their spatial consistency. Furthermore, all three datasets achieved satisfactory and reasonable results in simulating glacier area and streamflow variations when used as inputs for the hydrological-hydrodynamic model, exhibiting the robustness of the model in this data-scarce basin. This study provides a more profound understanding of the significance of gridded datasets in data-scarce areas situated on the Tibetan Plateau.
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来源期刊
Advances in Climate Change Research
Advances in Climate Change Research Earth and Planetary Sciences-Atmospheric Science
CiteScore
9.80
自引率
4.10%
发文量
424
审稿时长
107 days
期刊介绍: Advances in Climate Change Research publishes scientific research and analyses on climate change and the interactions of climate change with society. This journal encompasses basic science and economic, social, and policy research, including studies on mitigation and adaptation to climate change. Advances in Climate Change Research attempts to promote research in climate change and provide an impetus for the application of research achievements in numerous aspects, such as socioeconomic sustainable development, responses to the adaptation and mitigation of climate change, diplomatic negotiations of climate and environment policies, and the protection and exploitation of natural resources.
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