Field measurement and numerical simulation on distribution characteristics of wind-driven rain in setback buildings

被引:4
|
作者
Wang, Hui [1 ,2 ]
Zhou, Quan [1 ]
机构
[1] Hefei Univ Technol, Coll Civil Engn, Hefei 230009, Peoples R China
[2] South China Univ Technol, State Key Lab Subtrop Bldg Sci, Guangzhou 510640, Peoples R China
来源
关键词
Wind-driven rain; Setback building; Field measurement; Numerical simulation; Eulerian multiphase model; TIME RESOLUTION; CFD SIMULATION; DRIVING-RAIN; FACADES; ENVIRONMENT; GUIDELINES;
D O I
10.1016/j.jobe.2023.106686
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Under wind driven-rain (WDR) environment, building facades will absorb rainwater to varying degrees, which directly affects the heat and moisture migration of walls and the durability of wall materials. So far, the majority of research on architectural WDR has been focused on regular buildings with cubic shapes, and little research has been conducted on WDR for the widely used setback buildings. Therefore, it has become essential work in the field of WDR to reveal the spatial movement and facade distribution pattern for this type of building. In this paper, field measurements are conducted on a setback building and the WDR results are compared with traditional semi-empirical model predictions. Based on this, the Eulerian multiphase model is used to simulate the WDR field of setback buildings and analyze the influence of key factors such as wind speed, rain intensity, and shape size on the WDR flow characteristics and distribution for different typical setback buildings. The results show that, unlike the case of cubic building facades where the WDR catch ratio gradually increases along the height and is continuously distributed, the step shape of the setback building seriously disturbs the wind field and creates complex turbulence, resulting in a sudden plunge in the WDR distribution of the upper setback facade and a drastic change in the catch ratio along the height. In the simulated range of variables, the plunge rises with the increase of the upper setback facade indentation size; the plunge of the catch ratio at the base of the setback facade compared to the top of the bottom facade grows from 28.8% to 81.6% when the setback indentation size changes from 2 m to 8 m. When wind speed U-10 = 10 m/s and rain intensity R-h = 2 mm/h, the difference between the maximum and minimum values of catch ratio on the vertical midline of the upper setback facade can reach 308.2%, reducing the wind speed and rainfall intensity can lessen the difference. The field measurement results indicate that the difference between the measured mean value of WDR at the upper measurement point and the lower measurement point reaches 287.1%, which is similar to the numerical simulation, both significantly different from the traditional cubic building case. It demonstrates that the WDR field of the setback building is more complicated owing to the interference of the step profile.
引用
收藏
页数:20
相关论文
共 50 条
  • [41] Numerical simulation study on the hygrothermal performance of building exterior walls under dynamic wind-driven rain condition
    Xing Hu
    Huibo Zhang
    Hui Yu
    Building Simulation, 2024, 17 : 207 - 221
  • [42] The effects of rain on wind-driven turbulent flow
    Takagaki, N.
    Iwano, K.
    Komori, S.
    ADVANCES IN TURBULENCE XII - PROCEEDINGS OF THE 12TH EUROMECH EUROPEAN TURBULENCE CONFERENCE, 2009, 132 : 919 - 919
  • [43] Testing louver resistance to wind-driven rain
    Lichtenwald, R
    Van Becelaere, R
    ASHRAE JOURNAL-AMERICAN SOCIETY OF HEATING REFRIGERATING AND AIR-CONDITIONING ENGINEERS, 1998, : 48 - 52
  • [44] Mechanics of interrill erosion with wind-driven rain
    Erpul, Gunay
    Gabriels, Donald
    Norton, L. Darrell
    Flanagan, Dennis C.
    Huang, Chi-hua
    Visser, Saskia M.
    EARTH SURFACE PROCESSES AND LANDFORMS, 2013, 38 (02) : 160 - 168
  • [45] CURBING EROSION DURING WIND-DRIVEN RAIN
    不详
    AGRICULTURAL RESEARCH, 1975, 23 (09) : 11 - 11
  • [46] Comparison of different wind-driven rain gauges
    Juras, Peter
    Durica, Pavol
    Korenkova, Renata
    Advanced Materials Research, 2014, 1057 : 97 - 104
  • [47] A Proposed Calibration Procedure for the Simulation of Wind-Driven Rain in Small-Scale Wind Tunnel
    Cacciotti, R.
    Pospisil, S.
    Kuznetsov, S.
    Trush, A.
    EXPERIMENTAL TECHNIQUES, 2019, 43 (04) : 369 - 384
  • [48] A Proposed Calibration Procedure for the Simulation of Wind-Driven Rain in Small-Scale Wind Tunnel
    R. Cacciotti
    S. Pospíšil
    S. Kuznetsov
    A. Trush
    Experimental Techniques, 2019, 43 : 369 - 384
  • [49] Guidelines for the required time resolution of meteorological input data for wind-driven rain calculations on buildings
    Blocken, B.
    Carmeliet, J.
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2008, 96 (05) : 621 - 639
  • [50] Wind-driven cross ventilation in long buildings
    Chu, Chia-Ren
    Chiang, Bo-Fan
    BUILDING AND ENVIRONMENT, 2014, 80 : 150 - 158