基于GIS/RS技术和层次分析法的地下水潜力区评价与制图——以泰国那空叻差玛盐碱地为例

IF 0.9 Q4 GEOSCIENCES, MULTIDISCIPLINARY AIMS Geosciences Pub Date : 2022-01-01 DOI:10.3934/geosci.2023004
Watcharin Phoemphon, B. Terakulsatit
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引用次数: 0

摘要

摘要利用遥感技术、地理信息系统(GIS)和层次分析法(AHP)对泰国那空叻差玛省Non-Thai、Non-Sung、Non-Daeng、Khong和Kham Sakae Saeng等盐碱地的地下水潜势区(GWPZs)进行评价和圈定。综合研究区坡度、地貌、年降雨量、土壤质地等级、排水密度、地质、水文地质单元、土地利用/土地覆盖、地下水潜力、归一化植被指数等多种影响因素,构建了gwpz。采用层次分析法确定各专题层权重,确定地下水潜力带。各主题层权重由高到低依次为水文地质单元(17.61%)、地质(17.10%)、地下水潜力(12.09%)、土壤质地等级(12.09%)、排水密度(8.55%)、地貌(8.46%)、土地利用/土地覆盖(6.05%)、坡度(6.01%)、年降雨量(6.01%)和归一化植被指数(6.01%)。采用可接受一致性比(CR)评价AHP技术的可靠性,其决定系数(R2)为0.7131对17口地下水井的盐度数据进行了验证。AHP技术评价的总权重分为极高潜力、高潜力、中等潜力、差潜力和极差潜力5类。在整个研究区2390 km2范围内,特别是Kham Sakae Saeng、Non-Thai和Non-Sung地区,大部分地下水水质分布为中等潜力约1101 km2(46.01%)至差潜力约1114 km2(46.57%)。
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Assessment of groundwater potential zones and mapping using GIS/RS techniques and analytic hierarchy process: A case study on saline soil area, Nakhon Ratchasima, Thailand
The research purpose is to assess and delineate groundwater potential zones (GWPZs) in the saline soil area in the districts of Non-Thai, Non-Sung, Non-Daeng, Khong, and Kham Sakae Saeng, Nakhon Ratchasima province, Thailand, using remote sensing (RS), geographical information system (GIS), and analytical hierarchy process (AHP) techniques. The GWPZs were created by combining multiple influencing factors such as slope, landforms, annual rainfall, soil texture class, drainage density, geology, hydrogeological unit, land use/land cover, groundwater potential, and normalized difference vegetation index of the study area. The AHP technique was used to determine the weights of various thematic layers to identify the groundwater potential zone. The weights of the thematic layers in descending order consisted of hydrogeological unit (17.61%), geology (17.10%), groundwater potential (12.09%), soil texture class (12.09%), drainage density (8.55%), landforms (8.46%), land use/land cover (6.05%), slope (6.01%), annual rainfall (6.01%), and normalized difference vegetation index (6.01%), respectively. The acceptable consistency ratio (CR) is used to evaluate the reliability of AHP techniques, and which coefficient of determination (R2) of 0.7131 was used to validate the salinity data of 17 groundwater wells. The overall weightage of the AHP technique assessment was classified into 5 categories of the GWPZs including very high potential, high potential, moderate potential, poor potential, and very poor potential. The mostly groundwater quality distribution represented a moderate potential of about 1,101 km2 (46.01%) to a poor potential of about 1,114 km2 (46.57%) from the 2,390 km2 of the study area located throughout the study area especially Kham Sakae Saeng, Non-Thai, and Non-Sung districts.
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AIMS Geosciences
AIMS Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
7.70%
发文量
31
审稿时长
8 weeks
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