Investigating the influence of neighbouring structures on natural ventilation potential of a full-scale cubical building using time-dependent CFD
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R. P. Hoxey | Christos H. Halios | A. P. Robertson | Janet F. Barlow | Catherine J. Noakes | Mf King | Hannah Gough | C. Halios | H. Gough | J. Barlow | A. Robertson | R. Hoxey | C. Noakes | M. King | R. Hoxey | Hannah L. Gough | Adam Robertson
[1] A. J. Dutt,et al. Full scale and model investigation of natural ventilation and thermal comfort in a building , 1992 .
[2] Mohd. Farid Mohamed,et al. Computational Analysis of Wind-Driven Natural Ventilation in a Two Sided Rectangular Wind Catcher , 2013 .
[3] Bert Blocken,et al. CFD simulation of near-field pollutant dispersion on a high-resolution grid : a case study by LES and RANS for a building group in downtown Montreal , 2011 .
[4] Peter Richards,et al. Wind pressures on a 6m cube , 2001 .
[5] J. S. Turner,et al. QUANTIFICATION OF UNCERTAINTY IN COMPUTATIONAL FLUID DYNAMICS , 2006 .
[6] Ian P. Castro,et al. Large-eddy simulation for urban micro-meteorology , 2006 .
[7] M. Liddament,et al. A guide to energy efficient ventilation , 1996 .
[8] Yoshihide Tominaga,et al. On the accuracy of CFD simulations of cross-ventilation flows for a generic isolated building: Comparison of RANS, LES and experiments , 2017 .
[9] P. Roache. QUANTIFICATION OF UNCERTAINTY IN COMPUTATIONAL FLUID DYNAMICS , 1997 .
[10] Roberto Lollini,et al. Natural ventilation design: An analysis of predicted and measured performance , 2014 .
[11] Bert Blocken,et al. Wind tunnel experiments on cross-ventilation flow of a generic building with contaminant dispersion in unsheltered and sheltered conditions , 2015 .
[12] Tetsuro Tamura,et al. LES of the flow and building wall pressures in the center of Tokyo , 2008 .
[13] Mm Rahman,et al. Effects of beta ratio and Reynold's number on coefficient of discharge of orifice meter. , 2010 .
[14] P. Richards,et al. Unsteady flow on the sides of a 6m cube , 2002 .
[15] T. G. Thomas,et al. Mean Flow and Turbulence Statistics Over Groups of Urban-like Cubical Obstacles , 2006 .
[16] Panagiota Karava,et al. Wind-Induced Internal Pressures in Buildings with Large Façade Openings , 2012 .
[17] Hesheng Yu,et al. Validation and optimization of SST k-ω turbulence model for pollutant dispersion within a building array , 2016 .
[18] Peter Richards,et al. Flow reattachment on the roof of a 6 m cube , 2006 .
[19] Denise Hertwig,et al. Measurements and Computations of Flow in an Urban Street System , 2017, Boundary-Layer Meteorology.
[20] Peter Richards,et al. Appropriate boundary conditions for computational wind engineering models revisited , 2011 .
[21] Alan Robins,et al. Influence of urban morphology on air flow over building arrays , 2015 .
[22] Yoshihide Tominaga,et al. CFD modeling of pollution dispersion in a street canyon: Comparison between LES and RANS , 2011 .
[23] Bje Bert Blocken,et al. Computational Fluid Dynamics for urban physics: Importance, scales, possibilities, limitations and ten tips and tricks towards accurate and reliable simulations , 2015 .
[24] Mats Sandberg,et al. Quantitative ventilation assessments of idealized urban canopy layers with various urban layouts and the same building packing density , 2014 .
[25] Shigeki Nishizawa,et al. Wind Pressure and Air Flow in a Full-Scale Building Model under Cross Ventilation , 2004 .
[26] Peter Richards,et al. Pressures on a cubic building—Part 1: Full-scale results , 2012 .
[27] C C Federspiel,et al. Air-change effectiveness: theory and calculation methods. , 1999, Indoor air.
[28] D. W. Etheridge,et al. External flow effects on the discharge coefficients of two types of ventilation opening , 2007 .
[29] Bert Blocken,et al. CFD analysis of cross-ventilation of a generic isolated building with asymmetric opening positions : impact of roof angle and opening location , 2015 .
[30] Bje Bert Blocken,et al. Overview of pressure coefficient data in building energy simulation and airflow network programs , 2009 .
[31] Bert Blocken,et al. Wind tunnel analysis of flow and dispersion in cross-ventilated isolated buildings: Impact of opening positions , 2016 .
[32] Florian R. Menter,et al. The Scale-Adaptive Simulation Method for Unsteady Turbulent Flow Predictions. Part 1: Theory and Model Description , 2010 .
[33] V. Dorer,et al. Influence of morphologies on the microclimate in urban neighbourhoods , 2015 .
[34] An-Shik Yang,et al. Enhancement of city breathability with half open spaces in ideal urban street canyons , 2017 .
[35] P. Spalart. Strategies for turbulence modelling and simulations , 2000 .
[36] Mats Sjöberg,et al. The use of moments for assessing air quality in ventilated rooms , 1983 .
[37] Bert Blocken,et al. Ten iterative steps for model development and evaluation applied to Computational Fluid Dynamics for Environmental Fluid Mechanics , 2012, Environ. Model. Softw..
[38] Andreas K. Athienitis,et al. Airflow assessment in cross-ventilated buildings with operable façade elements , 2011 .
[39] Ian P. Castro,et al. Flow around a cube in a turbulent boundary layer: LES and experiment , 2009 .
[40] J. Samet,et al. Ventilation rates and health: multidisciplinary review of the scientific literature. , 2011, Indoor air.
[41] Bje Bert Blocken,et al. Air pollutant dispersion from a large semi-enclosed stadium in an urban area: high-resolution CFD modeling versus full-scale measurements , 2012 .
[42] Per Heiselberg,et al. Single-sided natural ventilation driven by wind pressure and temperature difference , 2008 .
[43] Tong Yang,et al. CFD and field testing of a naturally ventilated full-scale building , 2004 .
[44] T. Stathopoulos,et al. CFD simulation of the atmospheric boundary layer: wall function problems , 2007 .
[45] Christopher Baker,et al. Experimental measurements and computations of the wind-induced ventilation of a cubic structure , 2000 .
[46] Zheng-Tong Xie,et al. Large-eddy simulation for flow and dispersion in urban streets , 2009 .
[47] Peter Richards,et al. Flow patterns and pressure field around a full-scale building , 1993 .
[48] P. Richards,et al. Wind-tunnel modelling of the Silsoe Cube , 2007 .
[49] P. A. Sleigh,et al. Bioaerosol deposition in single and two-bed hospital rooms: A numerical and experimental study , 2013 .
[50] G. Evola,et al. Computational analysis of wind driven natural ventilation in buildings , 2006 .
[51] Stefano Leonardi,et al. Channel flow over large cube roughness: a direct numerical simulation study , 2010, Journal of Fluid Mechanics.
[52] Matthew Peter Straw. Computation and measurement of wind induced ventilation , 2000 .
[53] Zhaolin Gu,et al. Effect of uneven building layout on air flow and pollutant dispersion in non-uniform street canyons , 2011 .
[54] C. Chu,et al. A laboratory experiment of shear-induced natural ventilation , 2011 .
[55] S. Murakami,et al. Comparison of various revised k–ε models and LES applied to flow around a high-rise building model with 1:1:2 shape placed within the surface boundary layer , 2008 .
[56] Yin-Hao Chiu,et al. Turbulence effects on the discharge coefficient and mean flow rate of wind-driven cross-ventilation , 2009 .
[57] William J. Fisk,et al. Air Change Effectiveness and Pollutant Removal Efficiency During Adverse Mixing Conditions , 1997 .
[58] Theodore Stathopoulos,et al. Wind‐Induced Internal Pressures in Buildings , 1986 .
[59] Manabu Kanda,et al. Turbulent flow similarity over an array of cubes in near-neutrally stratified atmospheric flow , 2008, Journal of Fluid Mechanics.
[60] Zheng-Tong Xie,et al. LES and RANS for Turbulent Flow over Arrays of Wall-Mounted Obstacles , 2006 .
[61] A. Robins,et al. The flow around a surface-mounted cube in uniform and turbulent streams , 1977, Journal of Fluid Mechanics.
[62] Troy Halsey. Chapter 14 – Environment Design , 2010 .
[63] Shaun D. Fitzgerald,et al. Transient natural ventilation of a space with localised heating , 2010 .
[64] Yuanhui Zhang,et al. Experimental study of ventilation effectiveness and air velocity distribution in an aircraft cabin mockup , 2008 .
[65] M. Dehghan Manshadi,et al. An experimental study on the evaluation of natural ventilation performance of a two-sided wind-catcher for various wind angles , 2016 .
[66] Bert Blocken,et al. 50 years of Computational Wind Engineering: Past, present and future , 2014 .