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Extreme events in Italy from documentary sources: Venice as a case study

机译:来自文献资料的意大利极端事件:以威尼斯为例

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Venice risks to be submerged as a consequence of two problems: local land subsidence and sea level rise due to global warming. They both contribute to what is referred as Apparent Sea Level Rise (ASLR). Flooding Tides (locally: Acqua Alta) submerge Venice with an exponentially increasing frequency. The Acqua Alta is generated by a number of factors, the main of them being the Sirocco wind blowing over the Adriatic Sea, that ultimately displaces waters towards Venice. These extreme events have been investigated by using the documentary description of past floods, accurately reported over the last millennium, and tide gauge records for the recent period. A fundamental problem is to know the trend of the ASLR, possibly distinguishing between land subsidence and sea level components. Instrumental data go back to 1872 and a key point is to extend our knowledge back in time. Long-term ASLR has been investigated with the help of a biological indicator, the height of the green belt of the algae that live in the tidal range and whose upper front shows the average high tide level. Fortunately, in the first half of the 18th century, this indicator was accurately drawn by the famous painter Antonio Canaletto (1697-1768) and his pupils, mainly Bernardo Bellotto (1722-1780), in their photographic paintings made with an optical camera obscura. It has been possible to compare the tidal level, as it was in the 1700s and today. After careful spot investigation and minor corrections for some changes to the hydrological system occurred in the meantime, the bulk submersion of Venice estimated from the paintings is 61±11 cm with average yearly trend 1.9 mm y-1.
机译:威尼斯有可能被两个问题淹没:由于全球变暖,当地的土地沉降和海平面上升。它们都对表观海平面上升(ASLR)有所贡献。洪水(当地:Acqua Alta)淹没了威尼斯,而且呈指数级增长。 Acqua Alta是由多种因素产生的,其中主要是Sirocco风吹过亚得里亚海,最终使水流流向了威尼斯。通过使用对过去洪水的文献描述,最近一个千年的准确报告以及最近一段时间的潮汐记录,对这些极端事件进行了调查。一个基本的问题是要知道ASLR的趋势,可能要区分地面沉降和海平面分量。仪器数据可以追溯到1872年,关键是要及时扩展我们的知识。借助生物指示剂对长期ASLR进行了研究,该生物是生活在潮汐范围内且其上锋显示出平均高潮位的藻类绿化带的高度。幸运的是,在18世纪上半叶,这一指标是由著名画家安东尼奥·卡纳莱托(Antonio Canaletto)(1697-1768)和他的学生(主要是贝尔纳多·贝洛托(1722-1780))在用光学相机遮盖的摄影画中准确绘制的。可以比较1700年代和今天的潮汐水平。经过仔细的现场调查和对水文系统某些变化的细微修正,同时,从这些画中测得的威尼斯大片沉没量为61±11 cm,年平均趋势为1.9 mm y-1。

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