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2019 | OriginalPaper | Chapter

Uncertainty Quantification for RANS Predictions of Wind Loads on Buildings

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Abstract

Computational fluid dynamics simulations to calculate wind pressure loads on buildings can be strongly influenced by uncertainty in the inflow boundary conditions and the turbulence model. In the present work we investigate these uncertainties in Reynolds-averaged Navier-Stokes predictions for wind pressure coefficients of a high-rise building, and compare the results to wind tunnel measurements. The uncertainty in the inflow boundary condition is characterized using three uncertain parameters, the reference velocity, roughness length and model orientation, and propagated to the quantities of interest using a non-intrusive polynomial chaos expansion approach. The results indicate that the uncertainty in the inflow conditions is non negligible, but insufficient to explain the discrepancy with the wind tunnel data, in particular where flow separation occurs. The uncertainty related to the turbulence model is investigated by introducing perturbations in the Reynolds stress tensor. The results confirm that the turbulence model form uncertainty is dominant near the separation region that forms downstream of the windward building edge.

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Literature
1.
go back to reference Amerio L (2018) Experimental high resolution analysis of the pressure peaks on a building scale model façades. PhD thesis, Politecnico di Milano Amerio L (2018) Experimental high resolution analysis of the pressure peaks on a building scale model façades. PhD thesis, Politecnico di Milano
2.
go back to reference Smith RC (2013) Uncertainty quantification: theory, implementation, and applications, vol 12. SIAM Smith RC (2013) Uncertainty quantification: theory, implementation, and applications, vol 12. SIAM
3.
go back to reference Gorlé C, Emory M, Larsson J, Iaccarino G (2012) Epistemic uncertainty quantification for RANS modeling of the flow over a wavy wall. In: Center for turbulence research, annual research briefs Gorlé C, Emory M, Larsson J, Iaccarino G (2012) Epistemic uncertainty quantification for RANS modeling of the flow over a wavy wall. In: Center for turbulence research, annual research briefs
4.
go back to reference Emory M, Larsson J, Iaccarino G (2013) Modeling of structural uncertainties in Reynolds-averaged Navier-Stokes closures. Phys Fluids 25(11):110822CrossRef Emory M, Larsson J, Iaccarino G (2013) Modeling of structural uncertainties in Reynolds-averaged Navier-Stokes closures. Phys Fluids 25(11):110822CrossRef
5.
go back to reference Richards PJ, Hoxey RP (1993) Appropriate boundary conditions for computational wind engineering models using the \(k-\varepsilon \) turbulence model. J Wind Eng Ind Aerodyn 46:145–153CrossRef Richards PJ, Hoxey RP (1993) Appropriate boundary conditions for computational wind engineering models using the \(k-\varepsilon \) turbulence model. J Wind Eng Ind Aerodyn 46:145–153CrossRef
6.
go back to reference Parente A, Gorle C, van Beeck J, Benocci C (2011) Improved kappa-epsilon model and wall function formulation for the RANS simulation of ABL flows. J Wind Eng Ind Aerodyn 99:267–278CrossRef Parente A, Gorle C, van Beeck J, Benocci C (2011) Improved kappa-epsilon model and wall function formulation for the RANS simulation of ABL flows. J Wind Eng Ind Aerodyn 99:267–278CrossRef
7.
go back to reference Bohnhoff WJ, Dalbey KR, Eddy, JP, Frye JR, Hooper RW, Hu KT, Hough PD, Khalil M, Ridgeway EM, Rushdi A (2009) Dakota, a multilevel parallel object-oriented framework for design optimization, parameter estimation, uncertainty quantification, and sensitivity analysis: version 6.6 user’s manual. Sandia National Laboratories, Technical report SAND2010-2183 Bohnhoff WJ, Dalbey KR, Eddy, JP, Frye JR, Hooper RW, Hu KT, Hough PD, Khalil M, Ridgeway EM, Rushdi A (2009) Dakota, a multilevel parallel object-oriented framework for design optimization, parameter estimation, uncertainty quantification, and sensitivity analysis: version 6.6 user’s manual. Sandia National Laboratories, Technical report SAND2010-2183
8.
go back to reference Gorle C, Garcia-Sanchez C, Iaccarino G (2015) Quantifying inflow and RANS turbulence model form uncertainties for wind engineering flows. J Wind Eng Ind Aerodyn 144:202–212CrossRef Gorle C, Garcia-Sanchez C, Iaccarino G (2015) Quantifying inflow and RANS turbulence model form uncertainties for wind engineering flows. J Wind Eng Ind Aerodyn 144:202–212CrossRef
9.
go back to reference Iaccarino G, Mishra AA, Ghili S (2017) Eigenspace perturbations for uncertainty estimation of single-point turbulence closures. Phys Rev Fluids 2:024605CrossRef Iaccarino G, Mishra AA, Ghili S (2017) Eigenspace perturbations for uncertainty estimation of single-point turbulence closures. Phys Rev Fluids 2:024605CrossRef
10.
go back to reference Ng LWT, Eldred MS (2012) Multifidelity uncertainty quantification using non-intrusive polynomial chaos and stochastic collocation. In: 53rd AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and materials conference Ng LWT, Eldred MS (2012) Multifidelity uncertainty quantification using non-intrusive polynomial chaos and stochastic collocation. In: 53rd AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and materials conference
Metadata
Title
Uncertainty Quantification for RANS Predictions of Wind Loads on Buildings
Authors
G. Lamberti
C. Gorlé
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-030-12815-9_32

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