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Advanced Numerical and Computer Methods in Civil Engineering

Advanced Numerical and Computer Methods in Civil Engineering

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The development and application of advanced numerical and computer methods in civil engineering have become increasingly more important for modern engineers and researchers in recent decades. Advanced numerical and computer methods can be used, from the material level to the structural level, for solving nearly all engineering problems, solely or in combination with experimental/theoretical studies. In this Special Issue, we have successfully collected 10 excellent papers that present recent progress either in the novel development or the novel application of advanced numerical and computer methods for solving problems in civil engineering.

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Keywords

  • 3D3S finite element model
  • arbitrary elastic boundary
  • bond strength
  • BP artificial neural network
  • circular hollow sections
  • cold-formed
  • composite laminates
  • computational fluid dynamics
  • Corrosion
  • data-driven approach
  • differential quadrature finite element method (DQFEM)
  • distorted mound shape
  • edge heave
  • edge shrinkage
  • elastic mechanics
  • expansive soils
  • experiment verification
  • FBG sensors
  • flexural vibration
  • fragility analysis
  • FRCM systems
  • free surface flow
  • fuzzy pattern recognition
  • Gaussian process
  • grid structure
  • high-strength
  • hydrodynamic force
  • interfacial behavior
  • interfacial transition zone
  • interpolative shape functions
  • joint plate analysis
  • joint weld damage
  • lightweight-reinforced concrete structure
  • load domain
  • long-span steel structure truss
  • masonry columns
  • material property
  • meshless method
  • mild steels
  • numerical concrete model
  • numerical modeling
  • orthotropic elasticity
  • SRG systems
  • stiffened rafts
  • strain mode difference ratio
  • submerged structure
  • suction diffusion equation
  • surrogate model
  • transmission tower
  • ultra-high-performance fiber-reinforced concrete (UHPFRC)
  • uniaxial tensile stress-strain model
  • variable axial force cable
  • variable system reinforcement combination stiffness
  • virtual boundary spring
  • wavelet transform
  • wind resistance

Links

DOI: 10.3390/books978-3-7258-1329-2

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