Improvement alternatives for determining the watertightness performance of building facades

被引:4
|
作者
Perez-Bella, J. M. [1 ]
Dominguez-Hernandez, J. [1 ]
Cano-Sunen, E. [1 ]
del Coz-Diaz, J. J. [2 ]
Alvarez Rabanal, F. P. [2 ]
机构
[1] Univ Zaragoza, Dept Construct Engn, Engn & Architecture Sch, E-50018 Zaragoza, Spain
[2] Univ Oviedo, Dept Construct Engn, E-33204 Gijon, Spain
来源
BUILDING RESEARCH AND INFORMATION | 2015年 / 43卷 / 06期
关键词
building envelope; climate loads; facade design; performance assessment; rain; watertightness; wind; wind-driven rain; WIND-DRIVEN RAIN; ESTABLISH TEST PARAMETERS; UNIFORM METHODOLOGY; EROSION;
D O I
10.1080/09613218.2014.943101
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The accurate determination of a facade's watertightness performance is important for optimizing design. Different micro-climatic conditions can affect water penetration. The recently developed Bayesian method allows this performance to be estimated for any operating condition and location, based on the results of standardized watertightness tests. This performance-based method uses semi-empirical calculations for wind-driven rain, estimates of wind velocity based on the wind profile power law and analyses of the annual maximum climatic data. This method determines the return period of climatic conditions that each facade system can withstand. Alternative approximations are studied that may be implemented using the Bayesian method to obtain more precise or functional estimations: improved friction coefficients, peaks-over-threshold analyses or catch ratios from computational fluid dynamics (CFD), among others. The effects of these alternatives on the results of the Bayesian method were evaluated by analysing different case studies in two cities in Spain. This analysis suggests that the original formulation of the method underestimates watertightness performance and highlights the fundamental importance of wind velocity to estimate the performance of any facade accurately. This will provide greater precision for estimating facade performance and provides potential for introducing performance-based codes for watertightness.
引用
收藏
页码:723 / 736
页数:14
相关论文
共 50 条
  • [1] A comparison of methods for determining watertightness test parameters of building facades
    Perez-Bella, Jose M.
    Dominguez-Hernandez, Javier
    Cano-Sunen, Enrique
    del Coz-Diaz, Juan J.
    Suarez-Dominguez, Francisco J.
    [J]. BUILDING AND ENVIRONMENT, 2014, 78 : 145 - 154
  • [2] Reliability and adequacy of current watertightness test standards used to evaluate the performance of facades
    Recatala, Maria Arce
    Garcia Morales, Soledad
    Van den Bossche, Nathan
    [J]. 4TH CENTRAL EUROPEAN SYMPOSIUM ON BUILDING PHYSICS (CESBP 2019), 2019, 282
  • [4] An extended method for comparing watertightness tests for facades
    Perez-Bella, J. M.
    Dominguez-Hernandez, J.
    Rodriguez-Soria, B.
    del Coz-Diaz, J. J.
    Cano-Sunen, E.
    Navarro-Manso, A.
    [J]. BUILDING RESEARCH AND INFORMATION, 2013, 41 (06): : 706 - 721
  • [5] BUILDING FACADE WATERTIGHTNESS
    MYERS, JC
    RUGGIERO, SS
    [J]. PROGRESSIVE ARCHITECTURE, 1991, 72 (11): : 113 - 119
  • [6] A new method for determining the water tightness of building facades
    Perez-Bella, J. M.
    Dominguez-Hernandez, J.
    Rodriguez-Soria, B.
    del Coz-Diaz, J. J.
    Cano-Sunen, E.
    [J]. BUILDING RESEARCH AND INFORMATION, 2013, 41 (04): : 401 - 414
  • [7] Factorial method for performance assessment of building facades
    Chew, MYL
    De Silva, N
    [J]. JOURNAL OF CONSTRUCTION ENGINEERING AND MANAGEMENT-ASCE, 2004, 130 (04): : 525 - 533
  • [8] Performance of modern building facades in fire: a comprehensive review
    Nguyen, Kate T. Q.
    Weerasinghe, Pasindu
    Mendis, Priyan
    Tuan Ngo
    Barnett, Jonathan
    [J]. ELECTRONIC JOURNAL OF STRUCTURAL ENGINEERING, 2016, 16 (01): : 69 - 86
  • [9] Analytical process of the energy efficiency in building improvement alternatives
    Chanpichaigosol, Nuttapon
    Chaichana, Chatchawan
    Buachart, Chinnapat
    Tochaiwat, Kongkoon
    Rinchumphu, Damrongsak
    [J]. ENERGY REPORTS, 2022, 8 : 31 - 37