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首页> 外文期刊>Journal of Hydrology >Effect of bridge construction on floodplain hydrology - assessment by using monitored data and artificial neural network models
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Effect of bridge construction on floodplain hydrology - assessment by using monitored data and artificial neural network models

机译:桥梁建设对洪泛区水文的影响-利用监测数据和人工神经网络模型进行评估。

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Study of floodplain hydrology of urban areas is important for its implications to flood and pollution control and ecology of the floodplain areas. In this study, the effect of bridge-pier-strengthening work over Tama River at Nagata district, Japan on the general hydrological condition of the floodplain was investigated by analysing monitored hydrogeological data and results of artificial neural network (ANN) models. A conceptualization of surface and subsurface of flow condition based on field observations was made and linked with the behavior of monitored data at various monitoring wells. The spatio-temporal variation of hydrological variables in the study area was found to have influenced by the morphological change of the river and its flood plain in the last 120 years. The old river-channels have served as preferential flow pathways in the floodplain, which caused rapid change in groundwater level in some groundwater monitoring wells. The presence of some form of organized heterogeneity in the electrical conductivity in the study area was indicative of one of the effects of historic changes of the floodplain and river channel-pathways. ANN-based models formulated using the pre-construction period data offered benchmarks to analyse the effect of construction on the floodplain hydrology. Based on the interpretation of monitored data and results of ANN modeling, it was clearly found that the effect of construction on the floodplain hydrology was significant. (C) 2004 Elsevier B.V. All rights reserved.
机译:对城市洪泛区水文学的研究对于其对洪泛区的防洪和污染控制以及生态学具有重要意义。在这项研究中,通过分析监测的水文地质数据和人工神经网络(ANN)模型的结果,研究了日本永田县多摩河上的桥梁加固工程对洪泛区一般水文状况的影响。提出了基于现场观察的流动状况的表面和地下概念,并将其与各种监测井处的监测数据行为联系在一起。研究区域的水文变量的时空变化受最近120年河流及其洪泛平原的形态变化的影响。旧的河道已成为洪泛区的优先流动通道,这导致了某些地下水监测井中地下水位的快速变化。研究区域的电导率中存在某种形式的有组织的异质性,这是洪泛区和河道的历史变化的影响之一。使用施工前期数据制定的基于ANN的模型提供了基准,以分析施工对洪泛区水文的影响。通过对监测数据的解释和人工神经网络建模的结果,可以清楚地发现建设对洪泛区水文的影响是显着的。 (C)2004 Elsevier B.V.保留所有权利。

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