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Modeling of underground dams Application to planning in the semi arid areas (Biskra, Algeria)

机译:地下水坝施工在半干旱地区规划中的应用(Biskra,Algeria)

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In arid and semi-arid areas where desertification is progressing, exploitation of water resources is focused on surface water and groundwater who pose sustainability problem. The exploitation of surface water uses surface damheavily exposed to evaporation and cannot perform the function of "dam-reservoir" in the dry season. We envision the use of groundwater by the underground dams, designed to contain groundwater and accumulate water. Compared with conventional dam, underground dams have the advantage of not overwhelm the land, offer particularly low evaporation losses and preserve the environment. A DEM and the river network of the study area were obtained by ArcGIS software The results obtained were injected into Modfiow to extract the discharge. The dam body stability has been verified and validated using a model of the fluid-structure interaction under the platform "COMSOL Multiphysics". A significant gain in water volume is found by storing away the long intense sunshine and evaporation. COMSOL allows us to have an optimal design of the dam body.The development of the region requires necessary a control of water resources.
机译:在荒漠化正在进行的干旱和半干旱地区,水资源开采专注于造成可持续性问题的地表水和地下水。表面用水的开发使用“表面坝”蒸发蒸发,不能在干燥季节中执行“坝水库”的功能。我们设想了地下坝地下水的使用,设计用于含有地下水并累积水。与传统水坝相比,地下坝具有不是压倒土地的优势,提供特别低的蒸发损失并保持环境。通过ArcGIS软件获得了研究区域的DEM和河流网络,得到的结果注入ModFiow以提取排出。使用平台“COMSOL Multiphysics”下的流体结构相互作用模型验证和验证了大坝体稳定性。通过储存远离强烈的阳光和蒸发来发现水体积的显着增益。 COMSOL使我们能够拥有坝体的最佳设计。该地区的发展需要必要的水资源控制。

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