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相关概念视频

Design Example: Maintaining Level of an Embankment01:19

Design Example: Maintaining Level of an Embankment

48
Constructing a roadway embankment over uneven terrain requires precise leveling to ensure stability and proper drainage. Surveyors use a leveling instrument and staff to calculate ground elevations and determine the required fill material at each point along the embankment alignment.The process begins by positioning a leveling instrument near a benchmark with a known elevation. A backsight reading establishes the instrument height, which serves as a reference for subsequent measurements. A...
48
Design Example: Aggregate Gradation01:24

Design Example: Aggregate Gradation

85
The right type and quality of aggregates are crucial for concrete as they significantly influence its properties, mix proportions, and cost-effectiveness. If different sources are available for sand, the commonly used fine aggregate in concrete, the selection of sand is primarily based on its gradation.
The grading, or particle-size distribution, of sand is determined using sieve analysis, with standard sizes ranging from 150 μm to 10 mm (ASTM No. 100 sieve to 3⁄8 in. sieve). Sand is...
85
Vertical Curve: Problem Solving01:23

Vertical Curve: Problem Solving

26
Vertical curves provide the transition between two roadway grades, ensuring safety, comfort, and functionality. Calculating elevations at specific stations along the curve involves several systematic steps based on the curve's geometry and provided design parameters.The vertical curve is defined by its length, grades, Point of Vertical Intersection (P.V.I.) location, and P.V.I. elevation. The stations of the Point of Vertical Curvature (P.V.C.), where the curve begins, and the Point of Vertical...
26
Design Example: Traverse Angle Computations01:25

Design Example: Traverse Angle Computations

52
Traverse angle computations are a critical component of surveying, used to compute the internal angles within a closed traverse. A traverse consists of a series of connected lines forming a closed loop, often used for land boundary delineation or mapping. Calculating the internal angles ensures accuracy in the traverse geometry and is essential for checking survey data integrity.The process begins with known azimuths and bearings of the traverse sides. Internal angles at each vertex are...
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Design Example: Designing Water Slide01:18

Design Example: Designing Water Slide

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When designing a water slide, controlling the speed of water flow is crucial for rider safety while maintaining an exciting experience. As water flows down the slide, gravity causes it to accelerate, with its speed at the bottom depending on the height from which it starts. The higher the slide, the more potential energy the water has at the top, which is converted into kinetic energy as it descends, increasing its speed.
Bernoulli's principle determines the water's velocity along the...
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Methods of Obtaining Topography01:25

Methods of Obtaining Topography

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Topography involves measuring and mapping land elevations, natural features, and artificial structures to create accurate representations of the terrain. Topographic surveying relies on traditional and modern methods, each with distinct advantages and limitations.Traditional Surveying Methods:Transit stadia surveys and plane table surveys were widely used traditional surveying methods. These techniques relied on instruments like theodolites and stadia rods for measuring distances and angles,...
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相关实验视频

Updated: May 26, 2025

Spatial Multiobjective Optimization of Agricultural Conservation Practices using a SWAT Model and an Evolutionary Algorithm
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使用多层优化算法的多阶段斜坡的最佳设计.

Pingyang Fan1,2, Junhua Chen3, Junwen Chen3

  • 1School of Geosciences and Info-Physics, Central South University, Changsha, 410083, China. fanpingyang1601@163.com.

Scientific reports
|February 21, 2025
PubMed
概括

岩石质量的挖掘提高了斜坡的稳定性. 这项研究优化了使用FLAC3D和多层优化 (MVO) 的多阶段斜坡设计,证明了其在工程中的实际应用.

关键词:
安全系数 (FOS) 是一个安全系数.多向优化 (MVO) 是指多向优化.多个阶段的斜坡坡道.数字模拟 数字模拟

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科学领域:

  • 地质技术工程 地质技术工程
  • 岩石机械学 岩石机械学
  • 计算地质科学计算地质科学

背景情况:

  • 在土木工程中,斜坡稳定性至关重要.
  • 岩石质量挖掘是确保斜坡稳定的关键方法.
  • 优化多阶段斜坡设计对于实际应用至关重要.

研究的目的:

  • 使用岩石质量挖掘开发一个实用和最佳的多阶段斜坡设计.
  • 为斜坡设计应用数值模拟和优化算法.
  • 在现实工程场景中验证拟议的设计.

主要方法:

  • 使用FLAC3D软件进行数值模拟.
  • 多向优化 (MVO) 算法用于最佳的斜坡设计.
  • 在工程实践中实施和监测设计斜坡.

主要成果:

  • 通过MVO和FLAC3D模拟实现了最佳的多阶段斜坡设计.
  • 实施的设计证明了斜坡工程的实际可行性.
  • 记录的位移数据验证了优化设计的有效性.

结论:

  • 建议的最佳多阶段斜坡设计对于岩石质量挖掘是实用和有效的.
  • 数字模拟与MVO相结合,为斜坡工程提供了一个强大的方法.
  • 这项研究证实了优化设计对现实应用的适用性.