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SkyCiv software is all on the cloud, which means you can get instant access simply through a web browser. There is nothing to download, install or maintain. Simply login to your SkyCiv Account and visit the software directly. Having the software 100% online has a range of benefits over traditional software: • Instant access - there's nothing to download, no installation and no license keys • Updates are automatically rolled out to the user • Access your files and software from anywhere at anytime • Fully compatable on PC, MAC, tablets and mobile devices • Reduces the clutter on your computer • No IT requirements. With nothing to download or install, you can instanly pull the forces, spans, loads and load combinations directly from your structural analysis model. Instantly check your model for flexure, shear, axial and much more. • Also fully integrated with • Forces automatically imported from structural models • Supports load combinations from ASCE 7-10, AS 1170, EN1 and CSA • Spans, cross sections and materials imported from your model • Class and group members together, to complete one design for multiple members • Class and group members together, to complete one design for multiple members.

SkyCiv Reinforced Concrete Design Software is designed to be fast and easy to use, with the following features: • Control key factors for Strength, creep, iterations and more. • Add multiple forces along member, or use directly from S3D or Beam analysis software • Add multiple layers of reinforcement for both longitude and stirrups • Design multiple members at once • Easy input and intuitive user interface • Results displayed as a simple summary table and an optional detailed calculation report. SkyCiv Reinforced Concrete module is fully built into - our powerful structural analysis software and (our beam analysis software for simple and continuous beams): • Nothing further to install/setup.

Completely built in. • Import Load Combinations directly from ASCE, AS, CSA and Eurocode • Model, apply loads and analyze your beam and columns, run concrete design checks with a single click • Forces, spans, Load Combinations and section information integrates directly with these design checks • Beams/Columns checked for every evaluation point • Design your reinforced concrete structures from one model.

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Abstract The present work demonstrates the nonlinear finite element analysis (NLFEA) of 13 concentrically and eccentrically loaded short rectangular concrete column specimens reinforced with GFRP and conventional steel bars. GFRP bars are lightweight having the high tensile strength and high corrosion resistance. An NLFEA model for the rectangular concrete specimens was developed using the commercial software ABAQUS Standard and calibrated for different materials and geometric parameters based on the previous experimental test results of the studied specimen. The behavior of reinforced concrete was modelled using the concrete damaged plasticity (CDP) model, the behavior of steel bars was simulated as a bilinear elastoplastic material, and the GFRP bars were considered as a linear elastic material. After the calibration of CDP parameters, the control sample was used for the further numerical parametric analysis to investigate the effect of critical parameters, i.e., the area of concrete ( A c), the compressive strength of concrete ( ), and the ratio of longitudinal reinforcement ( ) and transverse reinforcement ( ) on the load-carrying capacity of columns. The results show that the selected NLFEA model can simulate the behavior of columns accurately and there was good agreement of numerical results obtained from ABAQUS Standard with the experimental results.