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首页> 外文期刊>Physics and chemistry of the earth >Estimation of small reservoir storage capacities in Limpopo River Basin using geographical information systems (GIS) and remotely sensed surface areas: Case of Mzingwane catchment
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Estimation of small reservoir storage capacities in Limpopo River Basin using geographical information systems (GIS) and remotely sensed surface areas: Case of Mzingwane catchment

机译:使用地理信息系统(GIS)和遥感地表面积估算林波波河流域的小型水库存储容量:Mzingwane流域案例

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The current interest in small reservoirs stems mainly from their utilization for domestic use, livestock watering, fishing and irrigation. Rarely were small reservoirs considered in the water resources system even though they are important in water resource planning and management. The main limitation being lack of knowledge on small reservoir capacities, for the methodologies used to quantify physical parameters of reservoirs are costly, time consuming and laborious. To address this challenge an attempt has been made in this study to estimate small reservoir storage capacities using remotely sensed surface areas. A field study on 12 small reservoirs was carried out in Mzingwane catchment in Limpopo River Basin; Zimbabwe. The depths of water accompanied with their coordinates were measured; from which area and capacity were calculated for each reservoir using geographical information system based on data acquired from the field and that from satellite images. The output data was compared and a linear regression analysis was carried out to establish a power relationship between surface area and storage capacity of small reservoirs. The Pearson correlation analysis at 95% confidence interval indicated that the variances of the two surface areas (field area and image area) were not significantly different (P < 0.05). The findings from linear regression analysis (log capacity-log area) show that there exist a power relationship between remotely sensed surface areas (m(2)) and storage capacities of reservoirs (m(3)), with 95% variation of the storage capacity being explained by surface areas. The relationship can be used as a tool in decision-making processes in integrated water resources planning and management in the river basin. The applicability of the relationship to other catchments requires further research as well as investigating the impacts of small reservoirs in water resources available in the river basin by carrying out a hydrological modelling of the catchment. (c) 2006 Elsevier Ltd. All rights reserved.
机译:当前对小型水库的兴趣主要来自于其用于家庭用途,牲畜浇水,捕鱼和灌溉。尽管它们在水资源规划和管理中很重要,但在水资源系统中很少考虑使用小型水库。主要的局限性是缺乏对小型油藏容量的知识,因为用于量化油藏物理参数的方法昂贵,费时且费力。为了应对这一挑战,本研究已尝试使用遥感表面积估算小型储层的存储能力。在林波波河流域姆津瓦内流域对12个小型水库进行了实地研究。津巴布韦。测量水的深度及其坐标。使用地理信息系统,根据从野外获得的数据和从卫星图像获得的数据,从中计算出每个水库的面积和容量。比较输出数据并进行线性回归分析,以建立表面积与小型水库储水量之间的幂关系。在95%置信区间进行的Pearson相关分析表明,两个表面积(场面积和图像面积)的方差没有显着差异(P <0.05)。线性回归分析(对数容量-对数面积)的结果表明,遥感表面积(m(2))与储层的存储容量(m(3))之间存在幂函数关系,其中存储量的变化为95%容量由表面积来解释。该关系可以用作流域水资源综合规划和管理决策过程中的工具。这种关系对其他流域的适用性需要进行进一步的研究,并需要通过对流域进行水文模拟来调查小型水库对流域可用水资源的影响。 (c)2006 Elsevier Ltd.保留所有权利。

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