• RAM Concept



コンプライアンス、効率性、実用性を高レベルで可視化して、スラブ、マット、べた基礎などのポストテンション方式の鉄筋コンクリートの床を経済的に設計します。床や基礎を効率的に確実に設計することで時間とコストを節約し、設計者として直面する最も一般的な懸念事項を克服します。RAM Conceptでは、強力なタスク自動化やわかりやすく整理された出力を使用して複雑な床形状を簡単に設計し、容易に変更を取り込むことができます。
    • Design foundations to international standards
    • Post-Tensioned Slab Optimization
    • Calculate punching shear
    • Design foundations to international standards
  • Design post-tensioned and conventional concrete floors

    • Design elevated concrete slabs with or without post-tensioning. Consider all major aspects of slab design, including service, ductility, and strength limit states, punching shear requirements, long-term deflections, and walking vibration.
  • Design raft or mat foundations to international standards

    • Design raft or mat foundations using soil springs and a zero-tension analysis. Confidently complete your designs with the extensive support of international standards.
  • 有限要素での設計と解析

    • 最先端の有限要素解析により、ビル全体の構造を正確かつ効率的に解析し、設計と作図を行うことができます。Bentleyの高速ソルバーによって、結果を待つ時間が大幅に短縮されます。
  • Analyze gravity, lateral, and temperature loads

    • Design and analyze simple or complex concrete floors for a wide range of loading conditions, including skip live loads, wind/seismic loads, and temperature loads.
  • Optimize post-tensioned concrete floor designs

    • Optimize the design of post-tensioning, reinforcement, and studded shear reinforcement for post-tensioned concrete floors using a cloud-based optimization feature. Save hours of engineering time by eliminating the need for tedious manual iteration. Let the optimizer sort through thousands of design alternatives and have confidence that your post-tensioned design has reduced material and labor costs.
  • Integrate with RAM Structural System

    • Transfer floor or raft/mat foundation geometry and loading, including lateral load effects, from RAM Structural System. Export reactions, including post-tensioning effects, to RAM Structural System for column design.
  • Analyze deflections for time-dependent effects

    • Capture the time-varying properties of concrete in your analysis. Account for creep, shrinkage, and cracking at various time stages in the analysis, accurately predicting deflections with consideration for how concrete truly behaves.
  • Analyze floors for walking vibration

    • Study dynamic behavior, including resonant and impulsive effects, of simple and complex concrete floors due to walking vibration. Evaluate sensitivity criteria for occupants or sensitive equipment.
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