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首页> 外文期刊>Hydrology and Earth System Sciences >Hydrogeological effects of dredging navigable canals through lagoon shallows. A case study in Venice
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Hydrogeological effects of dredging navigable canals through lagoon shallows. A case study in Venice

机译:通过泻湖浅滩疏浚通航运河的水文地质作用。 威尼斯案例研究

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摘要

For the first time a comprehensive investigation has been carried out to quantify the possible effects of dredging a navigable canal on the hydrogeological system under-lying a coastal lagoon. The study is focused on the Venice Lagoon, Italy, where the port authority is planning to open a new 10 m deep and 3 km long canal to connect the city passenger terminal to the central lagoon inlet, thus avoiding the passage of large cruise ships through the historic center of Venice. A modeling study has been developed to evaluate the short (minutes), medium (months), and long (decades) term processes of water and pollutant exchange between the shallow aquifer system and the lagoon, possibly enhanced by the canal excavation, and ship wakes. An in-depth characterization of the lagoon subsurface along the channel has supported the numerical modeling. Piezometer and sea level records, geophysical acquisitions, laboratory analyses of groundwater and sediment samples (chemical analyses and ecotoxicity testing), and the outcome of 3-D hydrodynamic and computational fluid dynamic (CFD) models have been used to set up and calibrate the subsurface multi-model approach. The numerical outcomes allow us to quantify the groundwater volume and estimate the mass of anthropogenic contaminants (As, Cd, Cu, Cr, Hg, Pb, Se) likely leaked from the nearby industrial area over the past decades, and released into the lagoon from the canal bed by the action of depression waves generated by ships. Moreover, the model outcomes help to understand the effect of the hydrogeological layering on the propagation of the tidal fluctuation and salt concentration into the shallow brackish aquifers underlying the lagoon bottom.
机译:首次进行了全面调查,以量化在撒上沿海泻湖的水文地质体系上疏浚通航运河的可能影响。该研究专注于意大利威尼斯泻湖,港口权力计划打开新的10米深度和3公里长的运河,将城市客运到中央泻湖进口连接,从而避免了大型巡航船的通过威尼斯的历史中心。已经开发了一种建模研究来评估浅层含水层系统和泻湖之间的水和污染物交换的较短(分钟),中等(几个月)和长(十年)术语过程,可能被运河挖掘,船舶唤醒。沿着通道的泻湖地下的深入表征已经支持数值建模。压力计和海平面记录,地球物理采集,地下水和沉积物样品的实验室分析(化学分析和生态毒性测试),以及3-D流体动力学和计算流体动态(CFD)模型的结果已被用于设置和校准地下多模型方法。数值结果允许我们量化地下水体积,并估计过去几十年中附近工业区可能泄露的人为污染物(如CD,Cu,Cr,Hg,Pb,Se),并释放到泻湖中运河床通过船产生的抑郁波的作用。此外,模型结果有助于了解水文地质分层对泻湖底层底部浅咸水含水层的潮汐波动和盐浓度的影响。

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  • 来源
    《Hydrology and Earth System Sciences》 |2017年第11期|共20页
  • 作者单位

    Univ Padua Deptt Civil Environm &

    Architectural Engn Via Trieste 63 I-35121 Padua PD Italy;

    M3E Srl Via Giambellino 7 I-35129 Padua PD Italy;

    Univ Padua Deptt Civil Environm &

    Architectural Engn Via Trieste 63 I-35121 Padua PD Italy;

    Univ Padua Deptt Civil Environm &

    Architectural Engn Via Trieste 63 I-35121 Padua PD Italy;

    Univ Padua Deptt Civil Environm &

    Architectural Engn Via Trieste 63 I-35121 Padua PD Italy;

    CNR Inst Marine Sci Arsenale Tesa 104 Castello 2737-F I-30122 Venice Italy;

    CNR Inst Marine Sci Arsenale Tesa 104 Castello 2737-F I-30122 Venice Italy;

    CNR Inst Marine Sci Arsenale Tesa 104 Castello 2737-F I-30122 Venice Italy;

    Natl Inst Oceanog &

    Expt Geophys OGS Borgo Grotta Gigante 42-C I-34010 Sgonico TS Italy;

    Natl Inst Oceanog &

    Expt Geophys OGS Borgo Grotta Gigante 42-C I-34010 Sgonico TS Italy;

    Consejo Nacl Invest Cient &

    Tecn Ctr Invest Geol Diagonal 113 275 B1904DPK La Plata Buenos Aires Argentina;

    Ca Foscari Univ Venice Inst Dynam Environm Proc CNR IDPA Campus Sci Via Torino 155 I-30172 Mestre Venice Italy;

    Ca Foscari Univ Venice Inst Dynam Environm Proc CNR IDPA Campus Sci Via Torino 155 I-30172 Mestre Venice Italy;

    Ca Foscari Univ Venice Dept Environm Sci Informat &

    Stat Via Torino 155 I-30172 Mestre Venice Italy;

    Ca Foscari Univ Venice Inst Dynam Environm Proc CNR IDPA Campus Sci Via Torino 155 I-30172 Mestre Venice Italy;

    Ca Foscari Univ Venice Dept Environm Sci Informat &

    Stat Via Torino 155 I-30172 Mestre Venice Italy;

    CNR Marine Technol Res Inst CNR INSEAN Via Vallerano 139 I-00128 Rome Italy;

    CNR Marine Technol Res Inst CNR INSEAN Via Vallerano 139 I-00128 Rome Italy;

    CNR Inst Marine Sci Arsenale Tesa 104 Castello 2737-F I-30122 Venice Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

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