铁"U"包装梁的扭矩参数的参数优化使用最近的元启发式优化算法
Gopal Charan Behera1, Dilip Kumar Bagal2, Praddyut Kumar Muduli1
1Department of Civil Engineering, Government College of Engineering, Kalahandi 766003, Odisha, India.
Materials (Basel, Switzerland)
|October 28, 2023
概括
本研究分析了扭力负荷下的结构元素,对铁水泥梁的破坏性和非破坏性方法进行了比较. 非破坏性分析和软计算方法,使用人工子优化 (ARO) 和动态算术优化算法 (DAOA),准确预测扭矩参数,为实验提供高效的替代方案.
科学领域:
- 结构工程 结构工程
- 材料科学 材料科学 材料科学
背景情况:
- 扭力是结构设计中的关键负载,由于更新的代码和建筑变化,它越来越重要.
- 分析结构元素的扭转行为,特别是铁水泥梁,需要强大的方法.
研究的目的:
- 为了分析受困铁凝土"U"包裹梁的扭力负荷.
- 为了比较破坏性和非破坏性方法来估计扭矩参数.
- 评估分析和软计算方法的有效性,包括ARO和DAOA算法.
主要方法:
- 破坏性方法:对扭矩参数的实验性确定.
- 非破坏性分析方法:软化结构模型.
- 非破坏性软计算方法:通过人工子优化 (ARO) 和动态算术优化算法 (DAOA) 进行回归系数分析.
主要成果:
- 使用分析和软计算方法预测的扭曲参数与实验 (破坏性) 值有很强的一致性.
- 无论是ARO和DAOA算法都表现出了确定工程问题的全球最佳值的能力.
- 非破坏性方法为传统的实验方法提供了可行和高效的替代方案.
结论:
- 分析和软计算方法,特别是使用ARO和DAOA的方法,对于分析铁梁的扭矩行为是有效的.
- 这些非破坏性技术比耗时和昂贵的实验方法具有显著的优势.
- 提出的算法广泛适用于需要优化的各种工程问题.
相关概念视频
Design of Prismatic Beams for Bending
243
The design of prismatic beams, structural elements with a uniform cross-section, focuses on ensuring safety and structural integrity under load. The design process begins by determining the allowable stress, either from material properties tables, or by dividing the material's ultimate strength by a safety factor. This safety factor is essential for accommodating uncertainties, and varies depending on the material—timber, steel, or concrete—with each having unique strength and...
243
Shearing Stresses in a Beam: Problem Solving
200
A cantilever beam with a rectangular cross-section under distributed and point loads experiences shearing stresses. The analysis begins by identifying the loads acting on the beam. Then, the reactions at the beam's fixed end are calculated using equilibrium equations. The vertical reaction is a combination of the distributed and point loads, while the moment reaction is the sum of their moments. The shear force distribution along the beam, resulting from these loads, is established by...
200
Torsion of Noncircular Members
143
Circular shafts undergoing torsional stress maintain their cross-sectional integrity due to their axisymmetric nature. This symmetry ensures an even distribution of stress, allowing the shaft to withstand torsion without distorting. In contrast, square bars, lacking this axial symmetry, experience significant distortion across their cross-sections when subjected to torsion, with the exception of along their diagonals and at lines connecting midpoints. A detailed examination of a cubic element...
143
Beams with Unsymmetric Loadings
123
Analyzing a supported beam under unsymmetrical loadings is essential in structural engineering to understand how beams respond to varied force distributions. This analysis involves calculating the deflection and identifying points where the slope of the beam is zero, which are crucial for ensuring structural stability and functionality.
The first moment-area theorem determines the slope at any point on the beam. This theorem indicates that the change in slope between two points on a beam...
The first moment-area theorem determines the slope at any point on the beam. This theorem indicates that the change in slope between two points on a beam...
123
Beams with Symmetric Loadings
195
The moment-area method is an analytical tool used in structural engineering to determine the slope and deflection of beams under various loads. Consider a cantilever with a concentrated load and moment at the free end. The first step is constructing a free-body diagram to calculate the reactions at the fixed end. Next, the bending moment diagram is plotted to visualize how the bending moment varies along the beam's length, focusing on points where the bending moment equals zero.
The M/EI...
The M/EI...
195
Prismatic Beams: Problem Solving
118
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...
The design begins with analyzing the beam as a free body to identify moments and force balances, thereby determining support reactions. Next, the...
118


