RAPID: COLLABORATIVE RESEARCH: Building Infrastructure to Prevent Disasters like Hurricane Maria

快速:合作研究:建设基础设施以预防飓风玛丽亚等灾害

基本信息

项目摘要

There is an urgent need to understand the impacts of severe flooding and infrastructure damage on public health after natural disasters. One limitation to effective disaster response is easy and rapid access to diverse information about available resources, community resource needs, baseline and current environmental conditions. This project aims to expand access to environmental and drinking water quality disaster response and recovery data in a publicly available format using a widely used collaborative online sharing platform named HydroShare. Curating a central repository of assembled data has the potential to greatly facilitate coordinated disaster responses of all types, and improve the monitoring of the recovery process. The project team will prototype this system with an assessment of drinking water, environment, and public health concerns unique to Puerto Rico in the aftermath of Hurricane Maria. By working directly with public water utilities, the project team intends to characterize and map the severity of impaired water resources and distribution systems in Puerto Rico, inform communities about how to protect themselves against hazards specific to their water, and to contribute to rebuilding so the nation is better prepared for future hurricanes. Developing cyber and social infrastructure to understand the dynamics of drinking water contamination after natural disasters will improve disaster preparedness and response, and contribute to efforts across the nation and the world to build for a resilient future.Recovery efforts from natural disasters can be more efficient with data-driven information on current needs and future risks. This project aims to advance open-source software infrastructure to support scientific investigation and data-driven decision making with a prototype system using a water quality assessment developed to investigate post-Hurricane Maria drinking water contamination in Puerto Rico. The widespread disruption of water treatment processes and uncertain drinking water quality within distribution systems in Puerto Rico poses risk to human health. However, there is no existing digital infrastructure to scientifically determine the impacts of the hurricane to inform a response to the crisis. After every natural disaster, including hurricane Maria, elementary questions on how to provide high quality water supplies and support basic human health are difficult to answer. This project will archive and make accessible data on environmental variables unique to Puerto Rico and Hurricane Maria, damage caused by the storm, and will begin to address time sensitive needs of citizens. By working directly with drinking water utilities to collect samples of biological and inorganic drinking water quality, this project aims to generate understanding and awareness of the degree to which drinking water systems were impacted by Hurricane Maria and the status of drinking water infrastructure and emergency recovery in Puerto Rico after the storm. The goal of this project is to advance understanding of how the severity of a hazard to human health (e.g., no access to safe culinary water) is related to the sophistication, connectivity, and operations of the physical and related digital infrastructure systems. By rapidly collecting data in the early stages of recovery, the team plans to test the design of an integrated cyberinfrastructure system to increase the accessibility of environmental and health data for understanding the impacts from hurricane-related natural disasters. The team will test and stress the CUAHSI HydroShare data publication mechanisms and capabilities to (1) assess the spatial and temporal presence of waterborne pathogens in public water systems impacted by a natural disaster, (2) demonstrate usability of HydroShare as a clearinghouse to centralize selected datasets related to Hurricane Maria, and (3) develop a prototype cyberinfrastructure to assess environmental conditions and public health impacted by natural disasters. By rapidly collecting data in the early stages of recovery, The team plans to test the design of an integrated cyberinfrastructure system to increase the accessibility of environmental and health data for understanding the impacts from hurricane-related natural disasters. This work will develop a prototype of a software infrastructure system to advance understanding of how data-driven information can reduce the impacts of natural disaster and serve as a platform for future research. The project thus serves to not only document post-disaster conditions, but develops a process to track the impact of recovery over time, as monitored through health, power availability and water quality.
迫切需要了解自然灾害后严重洪水和基础设施破坏对公共卫生的影响。有效救灾的一个限制是容易和迅速获得关于现有资源、社区资源需求、基线和当前环境条件的各种信息。该项目旨在通过一个名为HydroShare的广泛使用的协作式在线共享平台,以公开的格式扩大获取环境和饮用水质量灾难响应和恢复数据的途径。管理一个汇集数据的中央储存库有可能极大地促进所有类型的协调救灾,并改善对恢复过程的监测。项目团队将对该系统进行原型设计,评估波多黎各在飓风玛丽亚之后的饮用水、环境和公共卫生问题。通过直接与公共水务公司合作,项目团队打算描绘和绘制波多黎各水资源和分配系统受损的严重程度,告知社区如何保护自己免受水特有的危害,并为重建做出贡献,使国家更好地为未来的飓风做好准备。发展网络和社会基础设施,以了解自然灾害后饮用水污染的动态,将改善灾害准备和响应,并有助于在全国和世界范围内建立一个有弹性的未来。有了关于当前需求和未来风险的数据驱动信息,自然灾害后的恢复工作可以更加有效。该项目旨在推进开源软件基础设施,以支持科学调查和数据驱动的决策制定,并使用一个原型系统,该系统使用水质评估来调查波多黎各飓风玛丽亚后的饮用水污染。波多黎各供水系统内水处理过程的广泛中断和饮用水质量的不确定对人类健康构成威胁。然而,没有现有的数字基础设施来科学地确定飓风的影响,从而为应对危机提供信息。在包括玛丽亚飓风在内的每次自然灾害之后,关于如何提供高质量供水和支持基本人类健康的基本问题都难以回答。该项目将存档并提供有关波多黎各和飓风玛丽亚所特有的环境变量以及风暴造成的破坏的数据,并将开始解决公民的时间敏感需求。通过直接与饮用水公司合作,收集生物和无机饮用水质量样本,该项目旨在提高人们对饮用水系统受飓风玛丽亚影响程度的理解和认识,以及波多黎各饮用水基础设施和风暴后紧急恢复的状况。该项目的目标是促进对人类健康危害的严重程度(例如,无法获得安全的烹饪用水)与物理和相关数字基础设施系统的复杂性、连通性和操作之间的关系的理解。通过在恢复的早期阶段快速收集数据,该团队计划测试综合网络基础设施系统的设计,以增加环境和健康数据的可访问性,从而了解与飓风相关的自然灾害的影响。该团队将测试和强调CUAHSI HydroShare数据发布机制和功能,以(1)评估受自然灾害影响的公共水系统中水生病原体的时空存在,(2)证明HydroShare作为集中与飓风玛丽亚相关的选定数据集的信息交换中心的可用性,以及(3)开发一个原型网络基础设施,以评估受自然灾害影响的环境条件和公共卫生。通过在恢复的早期阶段快速收集数据,该团队计划测试综合网络基础设施系统的设计,以增加环境和健康数据的可访问性,从而了解与飓风相关的自然灾害的影响。这项工作将开发一个软件基础设施系统的原型,以促进对数据驱动信息如何减少自然灾害影响的理解,并作为未来研究的平台。因此,该项目不仅记录了灾后情况,而且制定了一个过程,通过监测健康、电力供应和水质,跟踪一段时间内恢复的影响。

项目成果

期刊论文数量(0)
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Jerad Bales其他文献

Featured Collection Introduction: National Water Model III
精选集介绍:国家水模型Ⅲ
The Right Answer for the Right Reason
正确原因的正确答案
  • DOI:
  • 发表时间:
    2012
  • 期刊:
  • 影响因子:
    0
  • 作者:
    Jerad Bales
  • 通讯作者:
    Jerad Bales
Introduction to Featured Collection on Use of NASA and Other Earth Observations Data, Assets, and Tools to Support Water Management — Part 1
关于使用 NASA 和其他地球观测数据、资产和工具支持水管理的精选集简介 — 第 1 部分
Featured Collection Introduction: National Water Model IV
精选集简介:国水四型
HydroShare retrospective: Science and technology advances of a comprehensive data and model publication environment for the water science domain
HydroShare回顾:水科学领域综合数据和模型出版环境的科技进展
  • DOI:
  • 发表时间:
    2024
  • 期刊:
  • 影响因子:
    4.9
  • 作者:
    D. Tarboton;Daniel P. Ames;J. Horsburgh;Jonathan L. Goodall;Alva Couch;Richard Hooper;Jerad Bales;Shaowen Wang;A. Castronova;M. Seul;R. Idaszak;Zhiyu Li;P. Dash;Scott Black;M. Ramírez;H. Yi;Chris Calloway;Clara Cogswell
  • 通讯作者:
    Clara Cogswell

Jerad Bales的其他文献

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{{ truncateString('Jerad Bales', 18)}}的其他基金

RAPID: Collaborative Research: Increased access to infrastructure for distance education in hydrologic science
RAPID:合作研究:增加水文科学远程教育基础设施的获取
  • 批准号:
    2028793
  • 财政年份:
    2020
  • 资助金额:
    $ 1.21万
  • 项目类别:
    Standard Grant
A University Consortium for Interdisciplinary Water Science
跨学科水科学大学联盟
  • 批准号:
    1338606
  • 财政年份:
    2014
  • 资助金额:
    $ 1.21万
  • 项目类别:
    Cooperative Agreement

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RAPID: Collaborative Research: Multifaceted Data Collection on the Aftermath of the March 26, 2024 Francis Scott Key Bridge Collapse in the DC-Maryland-Virginia Area
RAPID:协作研究:2024 年 3 月 26 日 DC-马里兰-弗吉尼亚地区 Francis Scott Key 大桥倒塌事故后果的多方面数据收集
  • 批准号:
    2427232
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    $ 1.21万
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RAPID: Collaborative Research: Multifaceted Data Collection on the Aftermath of the March 26, 2024 Francis Scott Key Bridge Collapse in the DC-Maryland-Virginia Area
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  • 批准号:
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  • 批准号:
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合作研究:RAPID:调查德克萨斯州狭长地带火灾后沉积物迁移的程度和时间
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