首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Monitoring and Modeling Tidally Induced Pore-Pressure Oscillations in the Soil of St. Mark's Square in Venice, Italy
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Monitoring and Modeling Tidally Induced Pore-Pressure Oscillations in the Soil of St. Mark's Square in Venice, Italy

机译:在意大利威尼斯圣马克广场土壤中监测和建模整个孔隙压力振荡

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摘要

Sea level rise and high tide events are threatening many coastal cities, which require adequate and sustainable protection measures. The historic city centre of Venice (Italy) is often flooded during very high tide events, especially the area of St. Mark's Island, which is at the lowest elevation among all the islands forming the city. To design cost-effective protection interventions to safeguard the historical heritage, a deep understanding of flooding mechanisms and the relationship between groundwater pressure and tidal oscillations is necessary. Geotechnical survey and analyses play an important role in this process. This paper presents the results of a recent monitoring campaign carried out in St. Mark's Island. A simplified one-dimensional analytical model was derived for saturated conditions to understand the key parameters that govern tidal induced pressure oscillations in soil (material properties, geometrical features, and wave properties). Additional features, such as partially saturated soil conditions and two-dimensional effects, were investigated numerically. Results showed that significant pressure oscillations occur in the subsoil, which should not be neglected when considering the stability of horizontal architectural structures, such as the historical mosaics and paving. However, seepage flow rate is small, and thus its impact on the drainage system is limited in terms of water discharge.
机译:海平面上升和高潮活动威胁着许多沿海城市,需要充足和可持续的保护措施。威尼斯历史悠久的市中心(意大利)往往在非常高的潮流活动中淹没,特别是圣马克岛的地区,这是形成城市的所有岛屿的最低海拔。为了设计经济高效的保护干预措施,以保护历史遗产,深入了解洪水机制以及地下水压力和潮汐振荡之间的关系是必要的。岩土调查和分析在此过程中发挥着重要作用。本文介绍了最近在圣克斯岛进行的监测活动的结果。推导出一种简化的一维分析模型用于饱和条件,了解控制土壤中的潮汐诱导压力振荡的关键参数(材料特性,几何特征和波属性)。在数值上研究了诸如部分饱和的土壤条件和二维效应的附加特征。结果表明,在考虑水平建筑结构的稳定性时,在诸如历史马赛克和铺路的稳定性时,在底层中发生显着的压力振荡。然而,渗流流量很小,因此其对排水系统的影响是有限的排水。

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