首页|2018-2022年青海省主要湖泊蓄水量时空变化数据集

2018-2022年青海省主要湖泊蓄水量时空变化数据集

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青海省是中国西北部重要的生态功能区,水资源总量丰富,但时空分布极不均匀,且由于气候、地理环境等因素的影响,大部分湖泊长期缺乏监测。而湖泊作为地表水水资源的重要载体,是研究气候变化和人类活动对水循环过程影响的重要指示器。国产高分一号、六号卫星宽幅相机空间分辨率为 16 m,组网运行可实现 2 天重复观测,可以高频次获取地表水体面积;ICESat-2 激光测高数据具备厘米级的测高精度,可以获取高精度的地表水体测高水位。本数据集基于GF-1/6 WFV水体面积和ICESat-2 测高水位构建青海省湖泊蓄水量遥感监测模型,通过遥感手段对青海省湖泊蓄水量进行时空变化监测。经验证,本数据集中湖泊蓄变量监测精度总体优于 93%,满足湖泊蓄水量时空变化遥感监测需求。本数据集在时间尺度上涵盖 2018-2022 年,共计 60期月度监测结果;空间尺度上覆盖了青海省面积大于 30 km2 的 33 个湖泊,主要集中分布在青海省西部、北部、东南部,可为青海省湖泊、水文与气候变化过程监测、水资源动态评价、优化水资源管理与调度提供基础数据支撑。
A dataset of spatial-temporal variation of major lake water storage in Qinghai Province during 2018-2022
Qinghai Province is an important ecological function area,which is located in the inland of Northwest China.Qinghai Province is abundant in the total amount of water resource,but the spatial-temporal distribution of water resource in Qinghai Province is extremely uneven.Moreover,due to the factors such as climate and geographical environment,most lakes lack monitoring for a long time.As a significant carrier of surface water resource,lakes are important indicators for studying the impact of climate change and human activities on the water cycle process.The domestic GF-1 and GF-6 satellites have the ability to observe the earth repeatedly for a period of 2 days by collaborating,thus the surface water area can be obtained at high frequency.A high-precision surface water level can be acquired by ICESat-2,which has centimeter-level height measurement accuracy.The water area derived from GF-1/6 and water level derived from ICESat-2 were adopted to build the models for monitoring spatial-temporal variation of water storage of lakes in Qinghai Province.We developed a dataset of spatial-temporal variation of lake water storage in Qinghai Province during 2018-2022 via the models.The monitoring accuracy of the dataset had been verified with an overall accuracy better than 93%,which meets the needs of remote sensing monitoring of spatial-temporal variation of lake water storage.The dataset contains a total of 60 monthly storage variation of 33 lakes an area of more than 30 km2 in Qinghai Province during 2018-2022.These lakes are mainly distributed in the west,north and southeast of Qinghai Province.The dataset can provide basic data support for lake,hydrological and climate change process monitoring,dynamic evaluation of water resources,and optimization of water resources management and scheduling in Qinghai Province.

Lake water storageGF-1/6 WFV imageriesICESat-2 dataQinghai Province2018-2022

张怀文、曹引、赵红莉、蒋云钟、严登明、赵慧子

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兰州交通大学测绘与地理信息学院,兰州 730070

甘肃省地理国情监测工程实验室,兰州 730070

地理国情监测技术应用国家地方联合工程研究中心,兰州 730070

中国水利水电科学研究院水资源研究所,北京 100038

水利部数字孪生流域重点实验室,北京 100038

黄河勘测规划设计研究院有限公司,郑州 450003

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湖泊蓄水量 GF-1/6 WFV ICESat-2 青海省 2018-2022年

2024

中国科学数据(中英文网络版)

中国科学数据(中英文网络版)

CSTPCD
ISSN:2096-2223
年,卷(期):2024.9(1)
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