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51.
Real‐time flood inundation mapping is vital for emergency response to help protect life and property. Inundation mapping transforms rainfall forecasts into meaningful spatial information that can be utilized before, during, and after disasters. While inundation mapping has traditionally been conducted on a local scale, automated algorithms using topography data can be utilized to efficiently produce flood maps across the continental scale. The Height Above the Nearest Drainage method can be used in conjunction with synthetic rating curves (SRCs) to produce inundation maps, but the performance of these inundation maps needs to be assessed. Here we assess the accuracy of the SRCs and calculate statistics for comparing the SRCs to rating curves obtained from hydrodynamic models calibrated against observed stage heights. We find SRCs are accurate enough for large‐scale approximate inundation mapping while not as accurate when assessing individual reaches or cross sections. We investigate the effect of terrain and channel characteristics and observe reach length and slope predict divergence between the two types of rating curves, and SRCs perform poorly for short reaches with extreme slope values. We propose an approach to recalculate the slope in Manning’s equation as the weighted average over a minimum distance and assess accuracy for a range of moving window lengths.  相似文献   
52.
为了研究满足交通事故现场记录图的技术性、证据性要求的交通事故现场测绘方 法,针对现有现场图定位方法的不足,重点从交通事故证据审查的视角,提出物证定位 观点,分析其技术构成并构建内容体系;在此基础上,依据技术标准基本要求,运用平面 坐标定位原理,以交通事故现场物证定位思想为基础,研究开发交通事故现场点线系列 直角坐标测绘定位方法及其具体应用技术。研究表明:物证定位是能够将现场元素定位 和现场道路定位协同考虑的一种交通事故现场物证固定技术,以其基本思想与原理可以 开发交通事故现场点线系列直角坐标测绘定位方法;该方法有多种变换方法可适用不同 情况的交通事故现场测绘;应用该方法绘制的现场记录图,可以满足现场记录图技术性 及证据性的双重要求。  相似文献   
53.
长江-洪泽湖段突发跨界污染风险交流信息图谱研究   总被引:1,自引:0,他引:1  
在分析我国当前环境风险交流存在问题基础上,将信息图谱引入到流域突发跨界环境污染风险交流中.参考公共卫生领域信息图谱制定步骤,结合突发跨界环境污染风险管理特点与要求,构建流域突发跨界环境污染利益相关方构架体系.编制流域突发跨界环境污染事件利益相关方问题清单框架,对流域突发跨界环境污染利益相关方问题计算权重,按权重大小进行排序分类.以南水北调东线工程长江-洪泽湖段为研究区域,绘制风险交流信息图谱,利用ArcGIS制作信息图谱单元图以及单元表实现对海量信息资料的挖掘、提炼与表达,不仅满足了利益相关方对于信息的迫切需求,提高了环境风险交流效率,保证了突发跨界环境污染应急处理处置措施的有力实施.同时也为利益相关方进行有效的风险沟通提供了预见性、准确的关键信息与支持信息,为流域突发跨界环境污染风险决策提供辅助信息工具.  相似文献   
54.
This paper examines changes in disaster response and relief efforts and recent web‐based geospatial technological developments through an evaluation of the experiences of the Center for Geographic Analysis, Harvard University, of the Sichuan (2008) and Haiti (2010) earthquake responses. This paper outlines how conventional GIS (geographic information systems) disaster responses by governmental agencies and relief response organisations and the means for geospatial data‐sharing have been transformed into a more dynamic, more transparent, and decentralised form with a wide participation. It begins by reviewing briefly at historical changes in the employment of geospatial technologies in major devastating disasters, including the Sichuan and Haiti earthquakes (case studies for our geospatial portal project). It goes on to assess changes in the available dataset type and in geospatial disaster responders, as well as the impact of geospatial technological changes on disaster relief effort. Finally, the paper discusses lessons learned from recent responses and offers some thoughts for future development.  相似文献   
55.
中国不断发生的重大环境突发事故使得环境风险管理提上了政府的议事日程,建立有效和实用的环境风险管理体系势在必行。近年来,风险地图已成为环境风险管理中迅速崛起的新领域。风险地图不但可以探讨污染物效应的空间特征,而且可作为风险可视化的重要工具。通过调研和分析大量文献,在描述了环境风险地图的功能、重要的风险地图类型基础上,以一个城市为例展示了风险图制作流程,最后,对环境风险地图在中国的应用和发展提出了建议。  相似文献   
56.
Natech accidents at industrial plants are an emerging risk with possibly serious consequences. For the mitigation of natech risk, authorities need to identify natech prone areas in a systematic manner. In order to facilitate probabilistic natech risk mapping, a unified methodology was developed that is based on the estimation of on-site natural hazard parameters, determination of damage probabilities of plant units, and assessment of probability and severity of possibly triggered natech events. The methodology was implemented as an on-line, extensible risk assessment and mapping software framework called RAPID-N, which allows rapid local and regional natech risk assessment and mapping with minimal data input. RAPID-N features an innovative data estimation framework to complete missing input data, such as on-site natural hazard parameters and plant unit characteristics. The framework is also used for damage assessment and natech consequence analysis, and allows easy modification of input parameters, dynamic generation of consequence models according to data availability, and extension of models by adding new equations or substituting existing ones with alternatives. Results are presented as summary reports and interactive risk maps, which can be used for land-use and emergency planning purposes by using scenario hazards, or for rapid natech consequence assessment following actual disasters. As proof of concept, the framework provides a custom implementation of the U.S. EPA's RMP Guidance for Offsite Consequence Analysis methodology to perform natech consequence analysis and includes comprehensive data for earthquakes. It is readily extendible to other natural hazards and more comprehensive risk assessment methods.  相似文献   
57.
Supreme Court cases have questioned if jurisdiction under the Clean Water Act extends to water bodies such as streams without year‐round flow. Headwater streams are central to this issue because many periodically dry, and because little is known about their influence on navigable waters. An accurate account of the extent and flow permanence of headwater streams is critical to estimating downstream contributions. We compared the extent and permanence of headwater streams from two field surveys with values from databases and maps. The first used data from 29 headwater streams in nine U.S. forests, whereas the second had data from 178 headwater streams in Oregon. Synthetic networks developed from the nine‐forest survey indicated that 33 to 93% of the channel lacked year‐round flow. Seven of the nine forests were predicted to have >200% more channel length than portrayed in the high‐resolution National Hydrography Dataset (NHD). The NHD and topographic map classifications of permanence agreed with ~50% of the field determinations across ~300 headwater sites. Classification agreement with the field determinations generally increased with increasing resolution. However, the flow classification on soil maps only agreed with ~30% of the field determination despite depicting greater channel extent than other maps. Maps that include streams regardless of permanence and size will aid regulatory decisions and are fundamental to improving water quality monitoring and models.  相似文献   
58.
59.
We created a measure to help comprehend population vulnerability to potential flooding and excessive heat events using health, built environment and social factors. Through principal component analysis (PCA), we created non‐weighted sum index scores of literature‐reviewed social and built environment characteristics. We created baseline poor health measures using 1999–2005 age‐adjusted cardiovascular and combined diabetes and hypertension mortality rates to correspond with social–built environment indices. We mapped US Census block groups by linked age‐adjusted mortality and a PCA‐created social–built environment index. The goal was to measure flooding and excessive heat event vulnerability as proxies for population vulnerability to climate change for Travis County, Texas. This assessment identified communities where baseline poor health, social marginalisation and built environmental impediments intersected. Such assessments may assist targeted interventions and improve emergency preparedness in identified vulnerable communities, while fostering resilience through the focus of climate change adaptation policies at the local level.  相似文献   
60.
ABSTRACT: This work presents a flexible system called GIS‐based Flood Information System (GFIS) for floodplain modeling, flood damages calculation, and flood information support. It includes two major components, namely floodplain modeling and custom designed modules. Model parameters and input data are gathered, reviewed, and compiled using custom designed modules. Through these modules, it is possible for GFIS to control the process of flood‐plain modeling, presentation of simulation results, and calculation of flood damages. Empirical stage‐damage curves are used to calculate the flood damages. These curves were generated from stage‐damage surveys of anthropogenic structures, crops, etc., in the coastal region of a frequently flooded area in Chia‐I County, Taiwan. The average annual flood damages are calculated with exceedance probability and flood damages for the designed rainfalls of 2, 5, 10, 25, 50, 100, and 200 year recurrence intervals with a duration of 24 hours. The average annual flood depth in this study area can also be calculated using the same method. The primary advantages of GFIS are its ability to accurately predict the locations of flood area, depth, and duration; calculate flood damages in the floodplain; and compare the reduction of flood damages for flood mitigation plans.  相似文献   
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