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ADAPT SOG 2015 โปรแกรมวิเคราะห์ออกแบบ​คอนกรีตอัดแรงบนพื้นดิน

ADAPT-SOG (Slab on Ground) เป็นโปรแกรมวิเคราะห์ออกแบบ​คอนกรีตอัดแรงบนพื้นดิน (Slab on Ground)บนพื้นดินแข็ง ด้วยวิธี Finite Element Method แบบ 3 มิติ

ADAPT-SOG เป็นโปรแกรมที่ช่วยให้วิศวก​รโครงสร้างวิเคราะห์ออกแบบโ​ครงสร้างได้แม่นยำ ตามพฤติกรรมโครงสร้างจริง ทำให้ได้ค่าที่มีความแม่นยำกว่าวิ​ธีอื่นๆ

เหมาะสำหรับ :
    • พื้นไร้คาน ของโกดังเก็บของ
    • โรงงานอุตสาหกรรมเบา
    • พื้นสนามเทนนิส

Generates a true three-dimensional solid model of the entire mat foundation and grade beams using its in-built Builder-Modeler and
DWG/DXF files, or
By using ADAPT's unique and easy-to-use Component Technology to assemble the structure
Handles non-rectangular and irregular and complex foundation plans
Treats multiple foundation soil properties below the same foundation slab
Models steps above and below the mat slab and grade beams
Place tendons in beam or slab, straight or profiled in any direction
Apply loads of any configuration, anywhere on the slab in addition to the perimeter loading
View and examine the solid model to verify the accuracy of the structure's representation/font>
Performs a detailed finite element analysis of the entire foundation system and its supporting structure using automatic adaptive meshing, flat shell and frame elements
Performs code check and reports the location and amount and length of reinforcement needed
Generates highly professional graphical and tabular reports, including plans for tendon layout with elongation
ADAPT-SOG supports UBC (Uniform Building Code) and PTI procedure
โปรแกรมรองรับหน่วยดังนี้ :
American Customary

ADAPT-SOG (Slab-On-Grade "SOG") is a complete three-dimensional (3D) Finite Element (FEM) Analysis and Design tool for the analysis and design of post-tensioned foundations slabs, with or without ribs, on either expansive or compressible soils. Unique Component Technology and Adaptive Automatic Meshing capabilities make ADAPT-SOG the ideal choice for all post-tensioned slab-on-grade designs, simple and complex.

Image 1. Structural Model Used for Analysis and Design

Modeling even the most complex structures is simple with ADAPT-SOG's Component Technology. All structural components, including the slab, openings, beams, steps, and tendons are modeled as they appear in the imported CAD file.

Image 2. Perspective View of 3D Slab Model with Tendons

With simple mouse clicks, users place tendons of any profile exactly where they will be installed. Verifying and fine-tuning the structural model is made easy through ADAPT-SOG's many 3D viewing options.

Image 3. Finite Element Mesh

Foundation slabs are quickly meshed using ADAPT-SOG's Adaptive Automatic Meshing or powerful manual meshing options.

Image 4. Graphical Display of Calculated Deflections

ADAPT-SOG displays analysis results in both 2D and 3D views. Fully interactive results offer engineers "fingertip" access to the data they need. Analysis results are organized and easily accessed through a folder structure.

Image 5. Fully Integrated Design Capabilities

Support lines and their associated tributaries are defined to facilitate the checking of allowable code stress limits and the design of additional reinforcement.

Image 6. Design Parameters

Once support lines (design strips) are defined, ADAPT-SOG automatically integrates demand moments and other forces along each strip. These design parameters are easily accessed through comprehensive tabular reports or graphically on the structural model.

Image 7. Automatically Generated Tendon Layout Plans

ADAPT-SOG uses the tendon design data provided by the user to automatically prepare tendon layout plans for export to CAD packages. Tendon layout plans can be configured to include tendon control points, control heights, tendon length, effective force, calculated elongation, and much more.

Image 8. Tendon Profile and Concrete Section Diagrams

ADAPT-SOG can generate the tendon profile and/or concrete section diagrams at any point in the foundation slab. Any generated section can be exported into AutoCAD for inclusion in the overall structural drawings.

Hardware Requirements
PC compatible computer
Windows operating system
Minimum of 128 MB RAM
10 GB hard drive

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