地球科学进展2024,Vol.39Issue(7) :752-765.DOI:10.11867/j.issn.1001-8166.2024.053

典型山地城镇梯度开发与地面沉降空间关联特征

Spatial Correlation Characteristics Between Gradient Development and Land Subsidence in Typical Mountainous Towns

李政宏 周亮 高鸿 王文达 魏伟
地球科学进展2024,Vol.39Issue(7) :752-765.DOI:10.11867/j.issn.1001-8166.2024.053

典型山地城镇梯度开发与地面沉降空间关联特征

Spatial Correlation Characteristics Between Gradient Development and Land Subsidence in Typical Mountainous Towns

李政宏 1周亮 2高鸿 3王文达 1魏伟4
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作者信息

  • 1. 兰州交通大学测绘与地理信息学院,甘肃 兰州 730030
  • 2. 兰州交通大学测绘与地理信息学院,甘肃 兰州 730030;地理国情监测技术应用国家地方联合工程研究中心,甘肃 兰州 730030;甘肃省地理国情监测工程实验室,甘肃 兰州 730030
  • 3. 兰州交通大学测绘与地理信息学院,甘肃 兰州 730030;甘肃省地理国情监测工程实验室,甘肃 兰州 730030
  • 4. 西北师范大学地理与环境科学学院,甘肃 兰州 730030
  • 折叠

摘要

山地城镇发展受限于地形地貌,出现了以新城建设为主的城市扩张模式.该模式地理空间表现为新城建设远离主城区,城市建设用地逐渐向更高的坡度上扩张(即建设用地梯度扩张).梯度扩张虽解决了山地城镇土地资源紧缺问题,但也提高了诸如地面沉降等地质灾害风险,因而探究梯度扩张规律以及识别灾害风险是研究的重中之重.研究选取梯度扩张程度剧烈的3个新城区作为典型案例区域,利用数字高程模型获取了 2017-2022年新区梯度扩张区域,基于2016-2020年Sentinel-1A SAR数据利用SBAS-InSAR技术得到地表形变信息,揭示新区梯度扩张与地面沉降之间的空间关联.结果表明:①2017-2022年,延安新区、两江新区和兰州新区的梯度扩张现象显著,梯度扩张区域占比分别为53.5%、51.0%和45.2%,受地形影响最严重的延安新区梯度扩张区域占比最高,梯度扩张速度与城市扩张速度趋势基本相符.②延安新区、两江新区和兰州新区最大沉降速率分别为28 mm/a、30 mm/a和29 mm/a,沉降多发生在新区扩张前沿且沉降区周围均存在不同规模梯度的扩张区域.③梯度扩张强度与地面沉降速率呈正相关,高梯度扩张强度和高地面沉降速率区域的集聚分布表明城市梯度扩张加速了扩张区域地面沉降的发生.研究对探究城市梯度扩张与地面沉降关联,推动山地城市可持续发展有着积极的作用.

Abstract

The development of mountainous towns is limited by the terrain and landforms,resulting in an urban expansion model dominated by new city construction.The geographical spatial manifestation of this model is that the construction of new cities is far from the main urban area and urban construction land gradually expands toward higher slopes(i.e.,gradient expansion of construction land).Although gradient expansion solves the problem of land resource scarcity in mountainous towns,it also increases the risk of geological disasters,such as land subsidence.Exploring the law of gradient expansion and identifying disaster risks are paramount.This study selected three new cities with severe gradient expansion as typical case areas and used DEM to obtain the gradient expansion areas of the new areas from 2017 to 2022.Based on Sentinel-1A SAR data from 2016 to 2020,SBAS InSAR technology was used to obtain surface deformation information in order to reveal the spatial correlation between gradient expansion and land subsidence in new areas.① The results showed that,from 2017 to 2022,the gradient expansion phenomenon in Yan'an New Area,Liangjiang New Area,and Lanzhou New Area was significant,with gradient expansion areas accounting for 53.5%,51.0%,and 45.2%,respectively.Yan'an New Area,which was most severely affected by terrain,had the highest proportion of gradient expansion areas,and the gradient expansion speed was consistent with the urban expansion speed trend.② The maximum settlement velocities in Yan'an New Area,Liangjiang New Area,and Lanzhou New Area were 28,30,and 29 mm/a,respectively.Settlement mostly occurred at the beginning of the expansion of the new area,and there were different scale-gradient expansion areas around the settlement area.③ The intensity of gradient expansion was positively correlated with the rate of land subsidence,and the clustering distribution of areas with high gradient expansion intensity and high ground subsidence rate indicated that urban gradient expansion accelerated the occurrence of land subsidence in the expansion area.This study had positive significance in exploring the correlation between urban gradient expansion and land subsidence,and in promoting the sustainable development of mountainous cities.

关键词

山地城市/梯度扩张/地面沉降/空间关联/InSAR技术/国家新区

Key words

Mountain cities/Gradient expansion/Ground subsidence/Spatial correlation/InSAR technology/National New Area

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基金项目

国家自然科学基金项目(42271214)

甘肃省自然科学基金重点项目(21JR7RA281)

中国科学院西部之光人才培养计划项目(2020XBZG-XBQNXZ-A)

出版年

2024
地球科学进展
中国科学院资源环境科学信息中心 国家自然科学基金委员会地球科学部 中国科学院资源环境科学与技术局

地球科学进展

CSTPCDCSCD北大核心
影响因子:2.045
ISSN:1001-8166
参考文献量17
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