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Geostatistical approach for the assessment of the water reservoir capacity in arid regions: a case study of the Akdarya reservoir,Uzbekistan

机译:干旱地区水库容量评估的地统计学方法:以乌兹别克斯坦阿克达亚水库为例

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摘要

The paper presents the results of a new geostatistical approach to generate bathymetric surface models from point measurement converted into continuous contour surfaces of reservoir bottoms in Uzbekistan. Sedimentation of reservoirs raises engineering, environmental and economical issues for the communities around the world in areas affected by a strong water deficit. Because of Uzbekistan's arid climatic conditions, and uneven spatial and temporal water resources distribution, responsive and innovative water availability assessment surveys of all major water reservoirs are required. Bathymetric surveying is a traditional method that is carried out for the estimation of reservoir volumes and surface areas of the corresponding reservoir stages in order to assess the water availability. Volume and surface area differences derived from multiple surveys of a reservoir provide storage loss estimates over time due to sedimentation. However, two main factors, such as intensive field data measurement and post data-processing, often limit the frequency of these surveys. Alternatively, innovative depth measurement technologies coupled with contouring and surface mapping programs provide automated reservoir volume and surface area calculations. This significantly reduces time, workload and financial burdens for reservoir sedimentation projects. This research proposes the use of geostatistical approach to assess the reservoir sedimentation in the Akdarya reservoir of Uzbekistan. The geostatistical approach includes (semi-) variogram analysis and interpolation (kriging and simulations—turning bands) techniques predicting values at un-sampled locations for generating digital bathymetric surface models of reservoir bottom conditions in order to calculate the volume and surface area at a given water elevation. The simulation enables to have range of reservoir volumes and surface areas with the same probability, in comparison to the kriging and traditional methods. This gives a real estimation of the resource availability for water operators to manage natural resources and hydraulic infrastructure in a sustainable manner.
机译:本文介绍了一种新的地统计方法的结果,该方法可以将点测量转换为乌兹别克斯坦储层底部的连续轮廓表面,从而生成测深表面模型。水库的淤积给受严重缺水影响的地区的世界各地的社区带来了工程,环境和经济问题。由于乌兹别克斯坦干旱的气候条件,以及时空水资源分布不均,因此需要对所有主要水库进行响应性和创新性的水可用性评估调查。水深测量是一种传统方法,用于估算相应储集层的储集层容积和表面积,以评估水的可利用量。从储层的多次勘测得出的体积和表面积差异可提供随时间推移由于沉积而造成的储量损失估算值。但是,两个主要因素(例如密集的现场数据测量和后期数据处理)通常会限制这些调查的频率。另外,创新的深度测量技术与轮廓和表面映射程序相结合,可提供自动的储层体积和表面积计算。这大大减少了水库沉淀项目的时间,工作量和财务负担。这项研究建议使用地统计学方法来评估乌兹别克斯坦阿克达亚水库的储层沉积。地统计方法包括(半)方差图分析和插值(克里金法和模拟-转向带)技术,预测未采样位置的值,以生成储层底部条件的数字测深表面模型,以便计算给定条件下的体积和表面积水位高。与克里金法和传统方法相比,该模拟能够以相同的概率确定储层体积和表面积的范围。这是对水务运营商以可持续方式管理自然资源和水力基础设施的可用资源的真实估计。

著录项

  • 来源
    《Environmental Geology》 |2011年第3期|p.447-460|共14页
  • 作者单位

    Universite de Bordeaux, GHYMAC Geosciences Hydrosciences,UFR des Sciences de la Terre et de la Mer,B18 avenue des Facultes, 33405 Talence, France;

    Universite de Bordeaux, GHYMAC Geosciences Hydrosciences,UFR des Sciences de la Terre et de la Mer,B18 avenue des Facultes, 33405 Talence, France;

    Universite de Bordeaux, GHYMAC Geosciences Hydrosciences,UFR des Sciences de la Terre et de la Mer,B18 avenue des Facultes, 33405 Talence, France;

    Universite de Bordeaux, GHYMAC Geosciences Hydrosciences,UFR des Sciences de la Terre et de la Mer,B18 avenue des Facultes, 33405 Talence, France;

    Tashkent Institute of Irrigation and Melioration (TIIM),39 Kary Niyazov Street, Tashkent 100000, Uzbekistan;

    Universite d'Orleans, CNRS/INSU Institut des Sciences de la Terre d'Orleans, UMR 6113 Campus Geosciences 1A, rue de la Ferollerie, 41071 Orleans, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water reservoir; sedimentation; bathymetric survey; geostatistics; volume estimation; central asia;

    机译:水库;沉降;水深测量;地统计学;数量估计;中亚;

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