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相关概念视频

Design Consideration01:22

Design Consideration

185
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...
185
Statically Indeterminate Problem Solving01:16

Statically Indeterminate Problem Solving

376
Statically indeterminate problems are those where statics alone can not determine the internal forces or reactions. Consider a structure comprising two cylindrical rods made of steel and brass. These rods are joined at point B and restrained by rigid supports at points A and C. Now, the reactions at points A and C and the deflection at point B are to be determined. This rod structure is classified as statically indeterminate as the structure has more supports than are necessary for maintaining...
376
Constraints and Statical Determinacy01:26

Constraints and Statical Determinacy

601
In structural engineering, the equilibrium of a system is not only determined by its equations of equilibrium but also with the help of constraints. Constraints refer to restrictions on the motion of a system. The proper combinations of constraints can minimize the total number of constraints needed to maintain a system in mechanical equilibrium. When this happens, the system is said to be statically determinate. For such systems, the unknown reaction supports can be estimated using equilibrium...
601
Yield Criteria for Ductile Materials under Plane Stress01:25

Yield Criteria for Ductile Materials under Plane Stress

160
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...
160
Prismatic Beams: Problem Solving01:15

Prismatic Beams: Problem Solving

110
In the design of a supported timber beam subjected to a distributed load, both the beam's physical dimensions and the timber's characteristics, such as its grade and species, are critical. These factors determine the allowable stress values, which are crucial for calculating the necessary beam depth to ensure structural integrity and safety.
The design begins with analyzing the beam as a free body to identify moments and force balances, thereby determining support reactions. Next, the...
110
Multimachine Stability01:25

Multimachine Stability

151
Multimachine stability analysis is crucial for understanding the dynamics and stability of power systems with multiple synchronous machines. The objective is to solve the swing equations for a network of M machines connected to an N-bus power system.
In analyzing the system, the nodal equations represent the relationship between bus voltages, machine voltages, and machine currents. The nodal equation is given by:
151

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Updated: Jun 24, 2025

Characterization of Complex Systems Using the Design of Experiments Approach: Transient Protein Expression in Tobacco as a Case Study
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一种基于可靠性的简化设计方法,用于考虑不同极限状态的多个设计变量.

Yanbing Fang1, Jingxuan Zhang1, Kun Feng1

  • 1Key Laboratory of Transportation Tunnel Engineering, Ministry of Education, Southwest Jiaotong University, Chengdu, 610031, Sichuan, China.

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|June 7, 2024
PubMed
概括
此摘要是机器生成的。

本研究介绍了一种通用可靠性模型和一种基于可靠性设计 (RBD) 的简化方法,使用多个变量. 结果强调了考虑RBD设计变量的变化和意想不到的结果的重要性.

关键词:
变化系数 的变化系数.多个设计变量.随机变量是一个随机变量.可靠性指数方法可靠性指数方法基于可靠性的设计.

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科学领域:

  • 工程 工程师 工程师 工程师
  • 可靠性工程可靠性工程
  • 结构设计 结构设计

背景情况:

  • 传统的基于可靠性的设计 (RBD) 方法可能无法完全捕捉复杂的工程场景.
  • 参数属性和负可靠性指数的影响需要进一步研究.
  • 在可靠性分析中,了解多个设计变量的行为至关重要.

研究的目的:

  • 为可靠性指数方法 (RIA) 建立一个通用的可靠性模型.
  • 开发一种简化的方法来解决多变量RBD问题.
  • 调查设计变量不确定性和可靠性要求对RBD结果的影响.

主要方法:

  • 开发一个包含目标,约束和判断函数的通用可靠性模型.
  • 将 RBD 问题翻译成通过简化的牛顿代和有限差异方法 (FDM) 解决的非线性方程.
  • 拟议可靠性方法的数值验证和FDM增量步骤大小的确定.

主要成果:

  • 建议的可靠性方法在解决RBD问题上是有效的.
  • 设计变量的变化,包括制造和操作的不确定性,显著影响RBD.
  • 在多变量问题中,设计值可能与变量系数 (CoV) 或增加可靠性要求不直观相关.

结论:

  • 设计变量的变化至关重要,在RBD中不应被忽视.
  • 在多变量问题中,设计值,CoV和可靠性要求之间的非直观关系需要仔细,问题特定的分析.
  • 对这些系统复杂性的认识对于准确的工程设计至关重要.