Foundation Engineering: Bearing Capacity / Terzaghi, Hansen, Vesic, and Meyerhof's Methods

Описание к видео Foundation Engineering: Bearing Capacity / Terzaghi, Hansen, Vesic, and Meyerhof's Methods

In the Name of God
✅ Terzaghi, Hansen, Vesic, and Meyerhof's Methods
✅ Bearing Capacity / Rectangular Footing
✅ Foundation Engineering
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✅ Bearing Capacity / Rectangular Footing

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✅ Terzaghi, Hansen, Vesic, and Meyerhof's methods are foundational approaches in geotechnical engineering for determining the bearing capacity of soils. Terzaghi's method is the earliest and simplest, providing a basic formula for bearing capacity using three key factors. Hansen expanded on Terzaghi's work by introducing additional correction factors to account for shape, depth, and load inclination. Vesic's method further refined these calculations by incorporating plasticity theory and offering more accurate predictions for complex conditions. Meyerhof introduced a generalized bearing capacity formula that considered the influence of the shape of the foundation, the depth of the foundation, the inclination of the load.

✅ In Terzaghi's method, the shape and depth factors for rectangular footings are derived from other methods (In this video).

✅ Our goal is to provide practical, innovative, and user-friendly Excel spreadsheets that are concept-oriented, education-focused, and design-centrist, covering all aspects of Soil Mechanics, Rock Mechanics, Advanced Soil Mechanics, Soil Mechanics Laboratory & Foundation Engineering.
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✅ Excel Spreadsheet for Academic lecturers, Engineers & Students:
1) Academic lecturers can teach these concepts effectively using Excel, providing students with practical, hands-on experience in analyzing and solving problems.
2) Using Excel spreadsheets, engineers can efficiently organize and analyze these factors, calculate bearing capacity, and perform sensitivity analyses to explore the impact of different variables.
3) Using these Excel spreadsheets, students can learn the concepts of bearing capacity comprehensively.
4) By setting up formulas and data tables, Excel allows for quick and accurate computations of these properties, which are essential for understanding soil behavior under different conditions. Additionally, Excel's charting tools can visually represent the relationships between these phases, aiding in the analysis and interpretation of Soil Mechanics, Rock Mechanics & Foundation Engineering for engineering projects. This approach enhances productivity and ensures precise handling of soil mechanics calculations.

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Dr.Ahmad Fahmi
Assistant Professor
The University of Bonab

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