利益相关者驱动的传感器部署,以确定佛罗里达州基韦斯特长期沿海洪水的特征

IF 7.3 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES Earths Future Pub Date : 2024-06-29 DOI:10.1029/2023EF003631
K. L. O’Donnell, T. Tomiczek, A. Higgins, S. Munoz, S. Scyphers
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引用次数: 0

摘要

不断变化的气候和不断增长的沿海人口加剧了环境危害的后果。通过历史和当前数据,已经对大规模洪水和严重灾害进行了广泛研究。对慢性沿岸洪水的了解较少,它对未来的沿岸人口构成巨大威胁。本文介绍了一种利用廉价加速度计记录慢性沿岸洪水的新技术。该技术在美国佛罗里达州基韦斯特市进行了测试,使用暴雨排水沟部署 HOBO 吊挂式 G 数据记录仪。由当地利益相关者和研究人员组成的团队在 2019 年 7 月至 2021 年 11 月期间进行了四次部署,对该方法的准确性和可行性进行了测试,结果有 22 个传感器成功记录了数据,其中 15 个传感器记录了洪水。传感器平均捕获了 13.58 次洪水事件,平均占部署时间的 12.07%。测量到的洪水事件与当地国家海洋和大气管理局(NOAA)的涨潮水位测量值相吻合。对预测沿海洪水的多种方法进行了比较。即使 NOAA 水位没有超过国家气象局 (NWS) 设定的海拔或洪水阈值,传感器也记录到了洪水,这表明仅靠 NOAA 水位不足以预测洪水。获得有效且廉价的传感器(如本文测试的传感器)来测量洪水事件,可以增加测量长期洪水危害的机会,并在利益相关者的参与下评估当地的脆弱性。记录仪的易用性和成功记录可提高社区根据数据做出适应海平面上升决策的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Stakeholder Driven Sensor Deployments to Characterize Chronic Coastal Flooding in Key West Florida

A changing climate and growing coastal populations exacerbate the outcomes of environmental hazards. Large-scale flooding and acute disasters have been extensively studied through historic and current data. Chronic coastal flooding is less well understood and poses a substantial threat to future coastal populations. This paper presents a novel technique to record chronic coastal flooding using inexpensive accelerometers. This technique was tested in Key West, FL, USA using storm drains to deploy HOBO pendant G data loggers. The accuracy and feasibility of the method was tested through four deployments performed by a team of local stakeholders and researchers between July 2019–November 2021 resulting in 22 sensors successfully recording data, with 15 of these sensors recording flooding. Sensors captured an average of 13.58 inundation events, an average of 12.07% of the deployment time. Measured flooding events coincided with local National Oceanic and Atmospheric Administration (NOAA) water level measurements of high tides. Multiple efforts to predict coastal flooding were compared. Sensors recorded flooding even when NOAA water levels did not exceed the elevation or flooding thresholds set by the National Weather Service (NWS), indicating that NOAA water levels alone were not sufficient in predicting flooding. Access to an effective and inexpensive sensor, such as the one tested here, for measuring flood events can increase opportunities to measure chronic flood hazards and assess local vulnerabilities with stakeholder participation. The ease of use and successful recording of loggers can give communities an increased capacity to make data-informed decisions surrounding sea level rise adaptation.

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来源期刊
Earths Future
Earths Future ENVIRONMENTAL SCIENCESGEOSCIENCES, MULTIDI-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
11.00
自引率
7.30%
发文量
260
审稿时长
16 weeks
期刊介绍: Earth’s Future: A transdisciplinary open access journal, Earth’s Future focuses on the state of the Earth and the prediction of the planet’s future. By publishing peer-reviewed articles as well as editorials, essays, reviews, and commentaries, this journal will be the preeminent scholarly resource on the Anthropocene. It will also help assess the risks and opportunities associated with environmental changes and challenges.
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