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2004-2024年青海湖岸区淹没影响及风险评估OA

Inundation impacts and risk assessment of Qinghai Lake from 2004 to 2024

中文摘要英文摘要

为了解青海湖面积扩张淹没范围及其影响,加强青海湖岸区淹没灾害预警、规避淹没风险.基于2004-2024年Landsat TM/OLI遥感影像、高程数据、土地利用类型数据和青海湖区域气象水文资料等,利用NDWI水体提取法、DEM水位模拟等地理空间分析方法,定量评估了2004-2024年青海湖岸区淹没特征及水位上涨对周边环境的影响,模拟预测岸区淹没风险.结果表明:2004-2024年青海湖水位累计上涨4.2 m,湖面积年均增长19.3 km2,累计永久性淹没草地面积197.3 km2,累计永久性淹没沙地面积131.7 km2;青海湖岸区淹没频率高低与区域高程相关,青海湖东岸的沙岛地区为淹没高频区,青海湖西北岸布哈河、沙柳河入湖口附近为淹没中低频区.根据不同水位下青海湖淹没范围模拟,青海湖面积扩张短期内不会影响到环湖地区的公路、铁路.水位上升至3202 m后,位于青海湖南岸的G109国道有淹没风险;水位上升至3204 m后,位于青海湖西北岸的青藏铁路有淹没风险.

To understand the submerged areas and impacts of expansion of Qinghai Lake and to improve early-warnings of lakeside inundation and risk-avoidance strategies,this study quantifies the inundation patterns,envi-ronmental effects of rising water levels,and predictions of future flood risk through geospatial analyses(normal-ized difference water index and digital elevation model simulations)of integrated Landsat TM/OLI imagery(2004-2024),elevation data,land-use maps,and regional meteorological and hydrological records.From 2004 to 2024,the lake level rose by 4.2 m while the surface area increased at 19.3 km2 per year,permanently submerging 197.3 km2 of grassland and 131.7 km2 of sandy land.The inundation frequency along the shoreline strongly de-pends on elevation,being high in the Shadao area on the eastern shore and moderate-to-low in the mouths of Buha and Shaliu Rivers on the northwestern shore.Scenario simulations indicated that the expanding lake area does not affect the surrounding highways or railways over the short-term.However,if the water level reaches 3202 m,it will threaten a section of the G109 national highway on the southern shore,and if it rises to 3204 m,it may inundate the Qinghai-Xizang railway on the northwestern shore.

马红璐;赵彤;李晓东;姬海娟;祝存兄

青海省气象科学研究所,青海 西宁 810001||青海省防灾减灾重点实验室,青海 西宁 810001青海省气象科学研究所,青海 西宁 810001||青海省防灾减灾重点实验室,青海 西宁 810001青海省气象科学研究所,青海 西宁 810001||青海省防灾减灾重点实验室,青海 西宁 810001青海省气象科学研究所,青海 西宁 810001||青海省防灾减灾重点实验室,青海 西宁 810001青海省气象科学研究所,青海 西宁 810001||青海省防灾减灾重点实验室,青海 西宁 810001

青海湖淹没风险Landsat气候变化地理空间分析

Qinghai Lakeinundation riskLandsatclimate changegeospatial analysis

《干旱区研究》 2026 (2)

304-312,9

国家自然科学联合基金项目(U23A2062,U21A2021)中国气象局气候变化专项(QBZZ202509)青海省气象局重点项目(QXZD2024-07)

10.13866/j.azr.2026.02.08

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