Design of single-column RC bridge piers using load factors and partial factors method.
The "RC Pier Design" is a civil engineering design software based on the Road Bridge Design Guidelines and Commentary (November 2017). It consists of the calculation of acting forces, stability calculations for direct foundations and pile foundations, design of beams, columns, bottom slabs, and bridge seats. It introduces load coefficients (γp, γq) and the partial coefficient method introduced in the Road Bridge Design Guidelines of November 2017, allowing for design under permanent and variable actions, Level 2 seismic motions, and accidental actions considering collision loads. 【Features】 - Design of single-column RC piers using load coefficients and partial coefficient methods is possible. - Considers flow pressure and hydrodynamic pressure during earthquakes. - Asymmetric beams in the direction perpendicular to the bridge axis are possible. - Steps can be incorporated in the bridge axis direction. - The results of acting force aggregation can be confirmed on the screen. *For more details, please refer to the PDF materials or feel free to contact us.
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【Other Features】 - The column cross-section supports six types: rectangular, rectangular hollow, circular, circular hollow, oval, and oval hollow. - You can choose whether or not to perform ground support capacity calculations. - It is possible to consider the horizontal resistance of the base slab. - For Level 2 earthquakes, seismic design of pile foundations can be performed in conjunction with "Seismic Design of Pile Foundations." - Up to 30 rows of piles can be arranged in both the bridge axis direction and the direction perpendicular to the bridge axis. - The number of layers in a multi-layer ground system can be considered up to 30 layers. 【Applicable Standards and References】 - Road Bridge Design Guidelines and Commentary I Common Edition, November 2017 (Japan Road Association) - Road Bridge Design Guidelines and Commentary III Concrete Bridges and Concrete Components Edition, November 2017 (Japan Road Association) - Road Bridge Design Guidelines and Commentary IV Substructure Edition, November 2017 (Japan Road Association) - Road Bridge Design Guidelines and Commentary V Seismic Design Edition, November 2017 (Japan Road Association) *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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