标题: | 应用地理资讯系统与因子分析方法于地下水补注潜势评估─以浊水溪冲积扇为例 Assessing the Groundwater Recharge Potential Using Geographic Information System and Factor Analysis - Case Study of Choshuihsi Alluvial Fan |
作者: | 陈冠宇 Chen, Kuan-Yu 张良正 Chang, Liang-Cheng 土木工程学系 |
关键字: | 地下水补注;地理资讯系统;因子分析;浊水溪冲积扇;Groundwater Recharge;Geographic Information System;GIS;Factor Analysis;Choshuihsi Alluvial Fan |
公开日期: | 2009 |
摘要: | 由于地下水在台湾地区水资源供应上扮演着极重要的角色,因此地下水资源的保育一直是个重要的议题,其中地下水补注为影响整个地下水系统的关键因素之一。因此,本研究乃结合地下水补注因子分析与地理资讯系统(GIS),以评估地下水补注潜势的空间分布并划分高补注区域。 前述地下水补注因子分析考量之因子,包括土地利用、表层土壤种类、河系密度、透水系数、平均年降雨量、降雨与地下水位变化相关性、单位蓄水量变化等七项因子。而补注潜势的计算则分为三个步骤,包括各因子细项分数的给定、因子间权重的订定以及补注潜势总分之计算。其中因子间权重的订定乃基于Shaban et al. (2006)提出之因子分析方法,绘制因子逻辑关系图以给定因子间权重,而补注潜势总分乃是各因子分数加权后之总合。前述因子细项分数的给定及补注潜势总分之计算等皆应用GIS软体辅助执行与展示。 本研究进一步将前述方法实际应用于浊水溪冲积扇,结果显示扇顶区域拥有较高之补注潜势,且由扇顶至扇尾逐渐递减。其中高补注区与工研院能源与资源研究所于1996年以施兰卜吉排列(Schlumberger Array)之地电阻探测法及观测井钻探资料所推估之补注区界线相当接近。此结果验证了本研究提出之方法对地下水补注潜势评估是个可靠有效的方法,亦可作为地下水资源相关管理之辅助工具。 Since groundwater, resources play a vital role in regional water supply, groundwater protection and conservation is an important issue in Taiwan. A systematic approach to assessing high recharge areas is a key factor in groundwater conservation. Therefore, this study proposes a systematic procedure that combines a factor-based method and geographic information system (GIS) to determine the spatial distribution of recharge potential and define high groundwater recharge areas. This study selects seven factors to determine recharge potential: land use, surface soil type, drainage density, average annual rainfall, the correlation between rainfall and groundwater level variation, the variation of unit aquifer storage, and hydraulic conductivity. Calculating the recharge potential requires three steps; defining all factor scores, determining the weighting of factors, and summing the weighted factor scores. The purpose of the first step is to define the recharge score for each factor. A high factor score value represents high recharge potential for that factor. Second, the determination of weighting among factors was based on Shaban et al.’s factor analysis method, in that a diagram of logical relationship among factors is defined and the factor weights are computed based on the diagram. After determining the recharge score of each factor and its weighting, the total recharge score was obtained by summing all weighted factor scores. A high total score represents a high recharge potential. This study uses a GIS system for analysis, and all the values, including recharge potential, were spatially distributed. This study applies the proposed method to Choshuihsi Alluvial Fan. Results show that the proximal area has a high recharge potential that decreases in the distal area. These results are similar to the results of prior studies using Resistivity Image Profile of the Schlumberger Array and the field investigations conducted by the Industrial Technology Research Institute of Taiwan. This case study demonstrates that the proposed procedure is a reliable and efficient method of measuring groundwater recharge potential, and is therefore a useful tool for groundwater resource management. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079616589 http://hdl.handle.net/11536/42298 |
显示于类别: | Thesis |
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