首页> 外文会议>International Symposium on Land Subsidence(SISOLS 2005) vol.2; 20051023-28; Shanghai(CN) >MONITORING AND MODELING PEAT SOIL SUBSIDENCE IN THE VENICE LAGOON
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MONITORING AND MODELING PEAT SOIL SUBSIDENCE IN THE VENICE LAGOON

机译:威尼斯泻湖中泥炭沉降的监测和建模

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摘要

The Venice Lagoon is characterized by a fast morphodynamics appreciable not only over the geological scale but also in historical and modern times. The lagoon environment proves very sensitive to even minor modifications of the natural and anthropogenic controlling factors. An important human endeavor accomplished in the past century is the reclamation of the southernmost lagoon area that has been turned into a fertile farmland. The reclaimed soil is reach in organic matter (peat) that may oxidize with release of carbon dioxide to the atmosphere. The continuous loss of carbon is causing a pronounced settlement of the farmland that lies below the present sea/lagoon level. This enhances the flood hazard and impacts noticeably on the maintenance and operational costs of the drainage system. Total peatland subsidence is estimated at 1.5 m over the last 70 years with a current rate of 1.5-2 cm/a. The geochemical reaction is primarily controlled by soil water content and temperature, and is much influenced by agricultural practices, crop rotation, and depth to the water table. A small (24 km~2) controlled catchment located in the area has been instrumented for accurately monitoring the basic parameters and recording the ground motion. The in situ measurements have been integrated with the combined use of remote sensing data to help cast light on the process and identify the mitigation strategies.
机译:威尼斯泻湖的特点是快速的形态动力学,不仅在地质规模上,而且在历史和现代时期都可观。泻湖环境被证明对自然和人为控制因素的微小改动非常敏感。上个世纪完成的一项重要的人类努力是对最南端的泻湖地区进行开垦,该地区已变成肥沃的农田。开垦后的土壤中会接触到有机物(豌豆),这些有机物可能会氧化,并释放二氧化碳到大气中。碳的连续损失正在导致农田的明显沉降,该沉降位于当前的海/泻湖水平面以下。这增加了洪水的危害,并显着影响排水系统的维护和运营成本。在过去的70年中,泥炭地总沉陷估计为1.5 m,当前速率为1.5-2 cm / a。地球化学反应主要受土壤含水量和温度控制,并受农业实践,作物轮作和地下水位深度的很大影响。该区域中的一个小型(24 km〜2)受控流域已被仪器用来精确监测基本参数并记录地面运动。原位测量已与遥感数据的综合使用相结合,以帮助将光投射到该过程上并确定缓解策略。

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