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相关概念视频

Applications of GIS: Disaster Management and Emergency Response01:29

Applications of GIS: Disaster Management and Emergency Response

88
Geographic Information System (GIS) technology is essential for risk identification, action prioritization, and resource optimization in critical situations like flooding and earthquakes. By integrating spatial and demographic data, GIS provides a comprehensive framework for emergency response.GIS integrates data layers, like rainfall intensity, topography, elevation profiles, and river levels, to model high-risk flood zones. These layers assess areas susceptible to flooding based on their...
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Design Example: Analyzing Capacity Contours for Flood Risk Assessment01:17

Design Example: Analyzing Capacity Contours for Flood Risk Assessment

50
Flood risk assessment involves careful planning and analysis to ensure the safety of communities near water retention structures. Capacity contours are a vital tool in this process, as they illustrate the potential spread of water at specific levels in a given area. In the context of building a bund across a small valley, these contours play a critical role in evaluating the safety of nearby residential areas.In this example, the bund is intended to store stormwater in the valley. The engineers...
50
Hazard Rate01:11

Hazard Rate

112
The hazard rate, also known as the hazard function or failure rate, is a statistical measure used to describe the instantaneous rate at which an event occurs, given that the event has not yet happened. From a probabilistic perspective, it represents the likelihood that a subject will experience the event in a very small time interval, conditional on surviving up to the beginning of that interval. In terms of frequency, the hazard rate can be viewed as the ratio of the number of events to the...
112
Manipulation and Analysis01:21

Manipulation and Analysis

26
GIS manipulation and analysis functions are vital for decision-making and planning. These activities range from data retrieval tasks, such as selecting information based on specific criteria, to advanced analytical techniques that address complex spatial problems.One critical GIS analysis method is overlaying, which combines multiple data layers to examine impacts. For example, overlaying a river-dammed lake boundary with road networks can identify affected infrastructure. Another common...
26
Selected Data About Geographic Locations01:25

Selected Data About Geographic Locations

27
Geographic Information Systems (GIS) rely on two core types of data: spatial data and attribute data.Spatial DataSpatial data defines the physical location of features within a coordinate system, typically expressed in terms of latitude and longitude. It provides precise positioning for elements like roads, rivers, or buildings.Attribute DataAttribute data complements spatial data by adding descriptive information about these features. For example, a road's spatial data includes its start and...
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Statistical Methods for Analyzing Epidemiological Data01:25

Statistical Methods for Analyzing Epidemiological Data

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Epidemiological data primarily involves information on specific populations' occurrence, distribution, and determinants of health and diseases. This data is crucial for understanding disease patterns and impacts, aiding public health decision-making and disease prevention strategies. The analysis of epidemiological data employs various statistical methods to interpret health-related data effectively. Here are some commonly used methods:
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Updated: Jul 8, 2025

Simulating Impacts of Ice Storms on Forest Ecosystems
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自然灾害:使用EMDAT数据库1995-2022年的综合研究.

D Tin1, L Cheng2, D Le3

  • 1Disaster Medicine Fellowship, Beth Israel Deaconess Medical Center, Boston, MA, USA; Harvard Medical School, Boston, MA, USA; Department of Critical Care, University of Melbourne, Australia.

Public health
|December 13, 2023
PubMed
概括
此摘要是机器生成的。

全球范围内自然灾害正在增加. 对11,360个事件 (1995-2022) 的分析表明,亚洲发生了最多的灾难和伤亡,水文事件最频繁,地质物理事件导致大多数死亡.

关键词:
地震 地震 地震 地震 地震 地震洪水 洪水 洪水 洪水缓解缓解缓解的方法自然灾害自然灾害的发生.响应 响应 响应 响应

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科学领域:

  • 灾害风险科学科学 灾害风险科学
  • 环境科学环境科学
  • 全球卫生安全全球卫生安全

背景情况:

  • 全球自然灾害的频率,强度和地理范围不断升级.
  • 驱动因素包括气候变化,人口增长和城市化.
  • 世界各地对自然灾害影响的担忧越来越大.

研究的目的:

  • 分析1995年至2022年自然灾害的趋势和影响.
  • 确定灾害发生和后果的区域和亚型特定模式.
  • 为风险分析和降低风险的策略提供信息.

主要方法:

  • 对自然灾害数据的回顾性分析.
  • 从1995年到2022年使用紧急事件数据库 (EM-DAT).
  • 将灾害按类型 (水文,地质物理,生物) 分类,并分析了区域分布和影响.

主要成果:

  • 在1995年至2022年期间记录了11,360起自然灾害 (平均398年).
  • 亚洲经历了最多的灾害 (4390) 和伤亡 (918,198).
  • 水文灾害最常见 (4969),地质灾害造成的死亡人数最多 (770,644),生物灾害造成的伤亡人数最多 (2544,主要发生在非洲).

结论:

  • 了解自然灾害历史影响对于区域风险评估至关重要.
  • 特定亚型的分析可以定制减缓策略.
  • 数据驱动的洞察力支持积极的灾害风险管理.