Lee Ryun Jung, Tao Zhihan, Prybutok Sara, Jang Suji, Dalaijamts Chimeddulam, Chiu Weihsueh A, Newman Galen
School of Architecture and Planning, College of Engineering and Integrated Design, The University of Texas at San Antonio, 501 W. César E. Chávez Blvd., San Antonio, TX 78207, USA.
School of Architecture, Texas A&M University, College Station, TX 77843, USA.
Clim Risk Manag. 2023;41. doi: 10.1016/j.crm.2023.100532. Epub 2023 Jun 15.
As extreme weather events have become more frequently observed in recent decades, concerns about exposure to potential flood risk have increased, especially in underserved and socially vulnerable communities. Galena Park, Texas, is a socially vulnerable community that also confronts escalated physical vulnerabilities due to existing flood risks from Buffalo Bayou and the Houston Ship Channel as well as proximity to industrial facilities that emit chemical pollution. To better understand the underlying risks that Galena Park is facing, this research assesses and visualizes the existing contamination hazards associated with the chemical facilities within Galena Park. Through this process, we (1) compute the environmental, health, and physical hazards associated with industrial facilities, (2) spatially geocode the points of contamination sources and flood exposure, and (3) increase awareness of existing risk by visualizing and distributing related information using an ArcGIS Dashboard. The results indicate that there are 169 points of location from 127 industrial facilities, and 24 points were inducing potential chemicals. In total, 126 chemicals have potential physical, health, and environmental hazards. On average, each facility has 2.4 chemicals that could cause potential hazards with a range of zero to 57 chemicals. When examining the specific physical, health, and environmental risks associated with the chemicals, on average each facility has 14.6 types of risks associated with it. This includes, on average, 9.8 types of health hazards, 1.53 physical hazards, and 2.3 environmental hazards per facility. When analyzing the spatial relationship between the chemical exposure and the current flood risk using the Dashboard, it is noticeable that most of the industrial facilities are located in the south of Galena Park, near Buffalo Bayou, where a variety of industrial facilities are clustered. Through this study, we spatially mapped the existing risks in Galena Park that are not readily available to the community and risks that are not currently tangible or visible. The utility of ArcGIS Dashboards affords the opportunity to translate massive databases into digestible knowledge that can be shared and utilized within the community. This study also takes another step toward building community resilience by providing knowledge that can be used to prepare for and respond to disasters. Visualizing unseen risks and promoting awareness can enhance risk perception when supported by scientific knowledge. Further investigation is necessary to enhance preparedness behaviors, identify proper evacuation techniques and routes, and build community networks to comprehensively promote resilience to multi-hazard circumstances.
近几十年来,极端天气事件愈发频繁,人们对潜在洪水风险暴露的担忧也与日俱增,尤其是在服务欠缺和社会弱势群体聚居的社区。得克萨斯州的加莱纳帕克就是这样一个社会弱势群体聚居的社区,由于布法罗河湾和休斯敦航道存在洪水风险,且靠近排放化学污染物的工业设施,该社区还面临着不断升级的自然脆弱性。为了更好地了解加莱纳帕克面临的潜在风险,本研究评估并可视化了加莱纳帕克内化学设施相关的现有污染危害。通过这一过程,我们:(1)计算与工业设施相关的环境、健康和自然危害;(2)对污染源和洪水暴露点进行空间地理编码;(3)通过使用ArcGIS仪表盘可视化并分发相关信息,提高对现有风险的认识。结果表明,127个工业设施有169个位置点,其中24个点存在潜在化学物质。总共有126种化学物质具有潜在的自然、健康和环境危害。平均而言,每个设施有2.4种可能造成潜在危害的化学物质,范围从0到57种化学物质。在研究与这些化学物质相关的具体自然、健康和环境风险时,平均每个设施有14.6种相关风险。这包括平均每个设施有9.8种健康危害、1.53种自然危害和2.3种环境危害。使用仪表盘分析化学暴露与当前洪水风险之间的空间关系时,可以明显看到,大多数工业设施位于加莱纳帕克南部,靠近布法罗河湾,那里聚集着各种工业设施。通过这项研究,我们在空间上绘制了加莱纳帕克社区中不易获取的现有风险以及当前不明显或不可见的风险。ArcGIS仪表盘的效用提供了将海量数据库转化为可在社区内共享和利用的易消化知识的机会。本研究还朝着增强社区复原力迈出了一步,提供了可用于灾害防范和应对的知识。在科学知识的支持下,可视化看不见的风险并提高认识可以增强风险认知。还需要进一步调查,以加强防范行为,确定适当的疏散技术和路线,并建立社区网络,以全面提高对多灾种情况的复原力。