DYNAMIC MODELING OF MOISTURE ABSORPTION AND DESORPTION IN BUILDINGS

被引:12
|
作者
ELDIASTY, R
FAZIO, P
BUDAIWI, I
机构
[1] School of Architecture, Arizona State University, Tempe, AZ
[2] Centre for Building Studies, Concordia University, Montreal, Que.
[3] Centre for Building Studies, Concordia University, Montreal, Que.
关键词
D O I
10.1016/0360-1323(93)90003-L
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Moisture absorption and desorption by building materials in the hygroscopic range have been theoretically modelled. The Biot number which can be defined as the ratio between the material moisture resistance to the convective mass transfer resistance has a significant meaning in relating where the greater resistance to moisture transfer occurs. Using Biot number, the dynamic moisture behaviour of building materials within the indoor environment has been classified into three main categories. At high Biot number (Bi --> infinity), the material surface attains instantaneous moisture equilibrium with the surroundings. At low Biot number (Bi --> 0), the material moisture behaviour can be described through a lumped-parameter modelling. For most materials in buildings, moisture interaction with the surroundings occurs through a thin layer of material surface, and the amount of moisture absorption or desorption is mainly determined by the material surface moisture conditions. In order to evaluate material surface moisture conditions, the governing moisture transfer equation is solved via an approximate analytic technique (i.e. the moment method) in conjunction with numerical formulation. Both the dynamic and the alternating nature of the absorption/desorption processes can be modelled by this proposed analytic-numeric method. Comparison with experimental results and numerical solutions shows satisfactory agreement with the proposed model. Using this model the dynamic effect of moisture absorption and desorption by interior materials on indoor air humidity can be modelled.
引用
收藏
页码:21 / 32
页数:12
相关论文
共 50 条
  • [31] A NEW METHOD OF OBTAINING THE EQUATIONS FOR ADSORPTION AND DESORPTION ISOTHERMS IN MOISTURE ABSORPTION
    SMIRNOV, MS
    LYSENKO, VI
    COLLOID JOURNAL OF THE USSR, 1991, 53 (05): : 744 - 748
  • [32] Moisture absorption and desorption predictions for plastic ball grid array packages
    Galloway, JE
    Miles, BM
    IEEE TRANSACTIONS ON COMPONENTS PACKAGING AND MANUFACTURING TECHNOLOGY PART A, 1997, 20 (03): : 274 - 279
  • [33] THE MODELING OF MOISTURE ABSORPTION IN EPOXIES - EFFECTS AT THE BOUNDARIES
    DEWILDE, WP
    FROLKOVIC, P
    COMPOSITES, 1994, 25 (02): : 119 - 127
  • [34] Moisture absorption modeling using design of experiments
    Yong, Virginia
    Hahn, H. Thomas
    Journal of Applied Polymer Science, 1600, 103 (03): : 1539 - 1543
  • [35] Investigate on Moisture Absorption/Desorption of Shoe Material Containing Hemp Fiber
    Yang, Yuan
    Hao, Xinmin
    Hao, Xin
    Li, Hongwei
    Feng, Xinxing
    ADVANCES IN TEXTILE ENGINEERING AND MATERIALS, 2013, 627 : 49 - +
  • [36] DETERMINING MOISTURE ABSORPTION DESORPTION PROPERTIES OF COMMERCIAL MEMBRANES BY THERMOGRAVIMETRY (TG)
    STAPLER, JT
    CORNELL, JH
    JOURNAL OF THERMAL ANALYSIS, 1993, 40 (03): : 877 - 886
  • [37] Moisture absorption modeling using design of experiments
    Yong, Virginia
    Hahn, H. Thomas
    JOURNAL OF APPLIED POLYMER SCIENCE, 2007, 103 (03) : 1539 - 1543
  • [38] Moisture absorption and cyclic absorption-desorption characters of fibre-reinforced epoxy composites
    Gao, Chaogan
    Zhou, Chuwei
    JOURNAL OF MATERIALS SCIENCE, 2019, 54 (11) : 8289 - 8301
  • [39] Modeling of the hygrothermal absorption and desorption for underground building envelopes
    Zhang, H. L.
    Marci, W. M.
    Fu, X. Z.
    ENERGY AND BUILDINGS, 2010, 42 (08) : 1215 - 1219
  • [40] Modeling and homogenizing a problem of absorption/desorption in porous media
    Mikelic, Andro
    Primicerio, Mario
    MATHEMATICAL MODELS & METHODS IN APPLIED SCIENCES, 2006, 16 (11): : 1751 - 1781