All collaborators
16 joint works

Nathan Mendes

Professor

Pontifical Catholic University of Paraná
Curitiba, Brazil

Joint publications with Denys Dutykh

16 joint works, 2017–2023 · 6 shared co-authors

  1. Solving parametric problems in building renovation with a spectral reduced-order method
    J. Build. Perform. Simul. · 2023
  2. An efficient numerical model for the simulation of coupled heat, air and moisture transfer in porous media
    Engineering Reports · 2020
  3. On the comparison of three numerical methods applied to building simulation: finite-differences, RC circuit approximation and a spectral method
    Building Simulation · 2020
  4. A new model for simulating heat, air and moisture transport in porous building materials
    Int. J. Heat Mass Transf. · 2019
  5. A spectral method for solving heat and moisture transfer through consolidated porous media
    Int. J. Numer. Meth. Eng. · 2019
  6. An efficient method to estimate sorption isotherm curve coefficients
    Inv. Prob. Sci. and Eng. · 2019
  7. An innovative method to determine optimum insulation thickness based on non-uniform adaptive moving grid
    Journal of the Brazilian Society of Mechanical Sciences and Engineering · 2019
  8. Solving nonlinear diffusive problems in buildings by means of a reduced spectral method
    J. of Build. Perf. Sim. · 2019
  9. Advanced reduced-order models for moisture diffusion in porous media
    Transport in Porous Media · 2018
  10. An adaptive simulation of nonlinear heat and moisture transfer as a boundary value problem
    Int. J. Therm. Sci. · 2018
  11. An improved explicit scheme for whole-building hygrothermal simulation
    Building Simulation · 2018
  12. On the estimation of moisture permeability and advection coefficients of a wood fibre material using the optimal experiment design approach
    Experimental Thermal and Fluid Science · 2018
  13. On the solution of coupled heat and moisture transport in porous material
    Transport in Porous Media · 2018
  14. Stable explicit schemes for simulation of nonlinear moisture transfer in porous materials
    J. of Build. Perf. Sim. · 2018
  15. Accurate numerical simulation of moisture front in porous material
    Building and Environment · 2017
  16. On the optimal experimental design for heat and moisture parameter estimation
    Experimental Thermal and Fluid Science · 2017

Research interests

Building Energy Efficiency

Record

Institution: Pontifical Catholic University of Paraná
Location: Curitiba, Brazil
Collaboration: 2017–2023