B. Thornton, W. Wang, Y. Huang, M. Lane, B. Liu Technical support document: 50% energy savings for small office buildings Pac. Northwest Natl. Lab. (2010) US DOE 2011 Buildings Energy Data Book (2012) S.J. Emmerich, A.K. Persily Energy impacts of infiltration and ventilation in U.S. Office buildings using multizone airflow simulation IAQ Energy, 98 (1998), pp. 191–203 S. Goubran, D. Qi, W.F. Saleh, L. Leon Comparing methods of modeling air infiltration through building entrances and their impact on building energy simulations Energy Build., 138 (2017), pp. 579–590 ASHRAE ASHRAE Handbook–fundamentals ASHRAE, Atlanta (2013) K. Nicklas Air Infiltration through Building Entrances Chalmers University of Technology (2013) http://publications.lib.chalmers.se/records/fulltext/184752/184752.pdf G.K. Yuill Impact of High Use Automatic Doors on Infiltration (1996), pp. 1–150 ASHRAE Res. Proj. 763-TRP. G.K. Yuill, R. Upham, H. Chen Air leakage through automatic doors ASHRAE Trans., 106 (2000), pp. 145–160 ASHRAE 90.1 Energy standard for buildings except low-rise residential buildings American Society of Heating, Refrigerating and Air-Conditioning Engineers Inc, Atlanta, GA (2010) L. (Leon) Wang Investigation of the impact of building Entrance air curtain on whole building Energy use Air Mov. Control Assoc. (2013), pp. 1–57 S. Goubran, D. Qi, L. (Leon) Wang Assessing dynamic efficiency of air curtain in reducing whole building annual energy usage Build. Simul., 10 (2017), pp. 497–507 J.J. Costa, L.A. Oliveira, M.C.G. Silva Energy savings by aerodynamic sealing with a downward-blowing plane air curtain-A numerical approach Energy Build., 38 (2006), pp. 1182–1193 Y.G. Chen Parametric evaluation of refrigerated air curtains for thermal insulation Int. J. Therm. Sci., 48 (2009), pp. 1988–1996 A.M. Foster, M.J. Swain, R. Barrett, P. D'Agaro, L.P. Ketteringham, S.J. James Three-dimensional effects of an air curtain used to restrict cold room infiltration Appl. Math. Model., 31 (2007), pp. 1109–1123 T.C. Pappas, S.A. Tassou Numerical investigations into the performance of doorway vertical air curtains in air-conditioned spaces ASHRAE Trans., 109 PART 1 (2003), pp. 273–279 Air Movement and Control Association International Application Manual for Air Curtains (2012) H. Giráldez, C.D. Segarra Pérez, I. Rodríguez, A. Oliva Improved semi-analytical method for air curtains prediction Energy Build., 66 (2013), pp. 258–266 J.C. Gonçalves, J.J. Costa, a. R. Figueiredo, a. M.G. Lopes CFD modelling of aerodynamic sealing by vertical and horizontal air curtains Energy Build., 52 (2012), pp. 153–160 F.C. Hayes Heat Transfer Characteristics of the Air Curtain: a Plane Jet Subjected to Transverse Pressure and Temperature Gradients University of Ilinois (1968) F.C. Hayes, W.F. Stoecker Design data for air curtains ASHRAE Trans. (1969), pp. 168–180 L.L. Wang, Z. Zhong An approach to determine infiltration characteristics of building entrance equipped with air curtains Energy Build., 75 (2014), pp. 312–320 S. Goubran, D. Qi, W.F.W.F. Saleh, L. Wang, R. Zmeureanu Experimental study on the flow characteristics of air curtains at building entrances Build. Environ., 105 (2016), pp. 225–235 New Wave Research Solo PIV - Nd: YAG Laser Systems (2004) Laser Optical CCD and SCMOS Cameras | Dantec Dynamics, (n.d.). F. Scarano, S. Ghaemi, G. Caridi, J. Bosbach, U. Dierksheide, A. Sciacchitano On the use of helium - filled soap bubbles for large - scale Tomographic PIV wind tunnel experiments Exp. Fluids, 56 (2015), pp. 7–10 https://doi.org/10.1007/s00348-015-1909-7 J. Bosbach, M. Kühn, C. Wagner, M. Raffel, C. Resagk, R. Puits, A. Thess Large Scale particle image velocimetry of natural and mixed convection 2 Meas. Convect. Air Flow Large Scales (2006), pp. 26–29 A. Li, L. Gou, X. Wang, Y. Zhang 2D-PIV experiment analysis on the airflow performance of a floor-based air distribution with a novel mushroom diffuser (FBAD-MD) Energy Build., 121 (2016), pp. 114–129 https://doi.org/10.1016/j.enbuild.2016.03.075 X. Cao, J. Liu, N. Jiang, Q. Chen Particle image velocimetry measurement of indoor airflow field: a review of the technologies and applications Energy Build., 69 (2014), pp. 367–380 https://doi.org/10.1016/j.enbuild.2013.11.012 ANSYS ANSYS FLUENT User's Guide – Release 12.0 Canonsburg, PA (2011) Z. Lian, D. Qi, L. Weiwei Influence of indoor partition on air distribution of ceiling-mounted cassette type indoor unit J. Cent. South Univ., 41 (2010), pp. 363–369 American Association of Automatic Door Manufacturers (AAADM) Automatic Door Selection Guide (2007) http://www.aaadm.com/pdfs/Selection%20Guide-503.pdf M. Shields, S. Gorber, M. Tremblay Methodological issues in anthropometry: self-reported versus measured height and weight Proc. Stat. (2008), pp. 1–10 http://www.statcan.gc.ca/pub/11-522-x/2008000/article/11002-eng.pdf Q. Chen Ventilation performance prediction for buildings: a method overview and recent applications Build. Environ., 44 (2009), pp. 848–858 https://doi.org/10.1016/j.buildenv.2008.05.025 ANSYS FLUENT 14.0 User Guide, 2011. E. ČSN 13829 Thermal Performance of Buildings–Determination of Air Permeability of Buildings–Fan Pressurization Method ČNI, Praha (2000) Q. Chen, K. Lee, S. Mazumdar, S. Poussou, L. Wang, M. Wang, Z. Zhang Ventilation performance prediction for buildings: model assessment Build. Environ., 45 (2010), pp. 295–303 P. Karava, T. Stathopoulos, A.K. Athienitis Airflow assessment in cross-ventilated buildings with operable façade elements Build. Environ., 46 (2011), pp. 266–279 R. Ramponi, B. Blocken CFD simulation of cross-ventilation for a generic isolated building: impact of computational parameters Build. Environ., 53 (2012), pp. 34–48 C. Sanjuan, M.J. Suárez, E. Blanco, M.D.R. Heras Development and experimental validation of a simulation model for open joint ventilated façades Energy Build., 43 (2011), pp. 3446–3456 G. Cao, M. Sivukari, J. Kurnitski, M. Ruponen, O. Seppänen Particle Image Velocimetry (PIV) application in the measurement of indoor air distribution by an active chilled beam Build. Environ., 45 (2010), pp. 1932–1940 X. Cao, J. Li, J. Liu, W. Yang 2D-PIV measurement of isothermal air jets from a multi-slot diffuser in aircraft cabin environment Build. Environ., 99 (2016), pp. 44–58 J. Li, J. Liu, C. Wang, M. Wesseling, D. Müller PIV experimental study of the large-scale dynamic airflow structures in an aircraft cabin: Swing and oscillation Build. Environ., 125 (2017), pp. 180–191