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相关概念视频

Design Example: Analyzing Capacity Contours for Flood Risk Assessment01:17

Design Example: Analyzing Capacity Contours for Flood Risk Assessment

52
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...
52
Hazard Rate01:11

Hazard Rate

116
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...
116
Design Consideration01:22

Design Consideration

192
Designing a structure involves a series of considerations, primarily the material's ultimate strength, calculated through tests that measure changes under increased force until the material reaches its breaking point or limit. The ultimate load, where the material breaks, is divided by its original cross-sectional area, resulting in the ultimate normal stress or strength. The ultimate shearing stress is another significant factor taken into account.
The factor of safety is another key...
192
Hazard Ratio01:12

Hazard Ratio

137
The hazard ratio (HR) is a widely used measure in clinical trials to compare the risk of events, such as death or disease recurrence, between two groups over time. It reflects the ratio of hazard rates—the instantaneous risk of the event occurring—between a treatment group and a control group. This measure provides valuable insights into the relative effectiveness of a treatment by assessing how the risk of an event differs between the two groups.
For example, in a clinical trial...
137
Yield Criteria for Ductile Materials under Plane Stress01:25

Yield Criteria for Ductile Materials under Plane Stress

168
In designing structural elements and machine parts using ductile materials, it is crucial to ensure that these components withstand applied stresses without yielding. Yielding is initially determined through a tensile test, which evaluates the material's response to uniaxial stress. However, tensile stress is insufficient when components face biaxial or plane stress conditions This condition requires advanced criteria to predict failure.
The Maximum Shearing Stress Criterion, also known as...
168
Fault Types01:18

Fault Types

90
When analyzing a single line-to-ground fault from phase A to ground at a three-phase bus, it is important to consider the fault impedance. This impedance is zero for a bolted fault, equal to the arc impedance for an arcing fault, and represents the total fault impedance for a transmission-line insulator flashover. To derive sequence and phase currents, fault conditions are translated from the phase domain to the sequence domain.
For line-to-line faults occurring between phases B and C, the...
90

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相关实验视频

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Watershed Planning within a Quantitative Scenario Analysis Framework
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Watershed Planning within a Quantitative Scenario Analysis Framework

Published on: July 24, 2016

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对最大可信的地震危险进行决定性全场景分析.

Xiang-Chao Wang1, Jin-Ting Wang2, Chu-Han Zhang1

  • 1Department of Hydraulic Engineering, Tsinghua University, 100084, Beijing, China.

Nature communications
|October 18, 2023
PubMed
概括

本研究介绍了评估最大可信地震 (MCE) 危险的全场景分析. 它使用宽带模拟来更现实地评估地震风险,帮助地震工程.

科学领域:

  • 地震地震学地震学
  • 计算地质物理学计算地质物理学
  • 土木工程 土木工程是指土木工程.

背景情况:

  • 大地震由于其破坏力和不可预测性而构成重大威胁.
  • 评估最大可信的地震 (MCE) 危险是具有挑战性的,因为许多潜在的场景和源过程的不确定性.
  • 准确的地震危险评估对于社会安全和基础设施弹性至关重要.

研究的目的:

  • 提出并展示一种新的全场景分析方法来评估MCE危险.
  • 通过考虑所有潜在的地震不确定性,提高地震危险评估的现实性和准确性.
  • 为在地震工程和风险管理方面提供一个更为明智的决策工具.

主要方法:

  • 开发了一种包含确定性宽带模拟的全场景分析方法.
  • 应用该方法来分析中国Xiluodu大的MCE危险.
  • 模拟了大量的MCE场景 (22,000,000) 在0-10 Hz的频率范围内.

主要成果:

  • 全场景分析通过考虑一组全面的潜在地震场景,成功评估了MCE危险.
  • 该方法为所有危险级别生成了任意强度测量,地面运动时间序列和空间地面运动场.
  • 证明了为地震危险评估提供详细和现实的地面运动数据的能力.

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12:44

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Using the Threat Probability Task to Assess Anxiety and Fear During Uncertain and Certain Threat
11:18

Using the Threat Probability Task to Assess Anxiety and Fear During Uncertain and Certain Threat

Published on: September 12, 2014

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结论:

  • 拟议的全场景分析方法为MCE危险评估提供了更现实的,更准确的方法.
  • 这种方法在地震工程和基础设施设计中具有很大的应用潜力.
  • 通过全面的场景分析来改进地震危险评估,可以提高对大地震的安全性和弹性.