Liquid water flow in Pinus radiata during drying

被引:2
|
作者
Scheepers, Gerhard [1 ]
Moren, Tom
Rypstra, Tim
机构
[1] Univ Stellenbosch, Dept Forest & Wood Sci, ZA-7600 Stellenbosch, South Africa
[2] Lulea Univ Technol, Div Wool Sci & Technol, S-95187 Lulea, Sweden
关键词
D O I
10.1007/s00107-007-0171-y
中图分类号
TB3 [工程材料学]; TS [轻工业、手工业、生活服务业];
学科分类号
0805 ; 080502 ; 0822 ;
摘要
End-sealed 60 x 60 x 250 mm(3) Pinus radiata pieces were dried at 65/37 degrees C (dry bulb/wet bulb temperature) and 4 ms(-1) air speed to study various drying phenomena above fibre saturation point. While drying, an X-ray computed tomography (CT) scanner captured a cross-cut density image every ten minutes. The density data was used to determine moisture content, rate of moisture loss from the core, wetline (boundary line of the free water region) depth and cross-cut area of the wood pieces. Repeating patterns were observed, which indicated that the cavity-size distribution of the wood pieces dictated fluctuations in the rate of moisture loss from the core and cross-cut area shrinkage during drying in the free water phase. It is hypothesised that, while drying an interconnected capillary network in the free water phase, the largest meniscus penetrates a wood piece through the largest cavities, thus also allowing air into the capillary network. The largest meniscus would always get smaller as it penetrates the wood piece until it is not the largest meniscus in the network anymore. Then the new largest meniscus would start penetrating the capillary network, etc. The largest meniscus would also determine the liquid tension in the capillary network. When the largest meniscus gets small enough, and the liquid tension strong enough, deformation and collapse of the remaining liquid-filled cavities can occur. A large liquid-filled interconnected capillary network would eventually fragment into a number of smaller liquid-filled interconnected networks, at which point a receding wetline could be observed.
引用
收藏
页码:275 / 283
页数:9
相关论文
共 50 条
  • [21] WATER RELATIONS OF PINUS-RADIATA IN COMPETITION WITH WEEDS
    SANDS, R
    NAMBIAR, EKS
    CANADIAN JOURNAL OF FOREST RESEARCH-REVUE CANADIENNE DE RECHERCHE FORESTIERE, 1984, 14 (02): : 233 - 237
  • [22] The effect of Pinus radiata plantations on water resources in Chile
    Huber, Anton
    Iroume, Andres
    CLIMATE VARIABILITY AND CHANGE - HYDROLOGICAL IMPACTS, 2006, 308 : 698 - +
  • [23] Effect of Pinus radiata plantations on water balance in Chile
    Huber, Anton
    Iroume, Andres
    Bathurst, James
    HYDROLOGICAL PROCESSES, 2008, 22 (01) : 142 - 148
  • [24] Emissions From Kiln Drying of Pinus radiata Timber: Analysis, Recovery, and Treatment
    Pang, Shusheng
    DRYING TECHNOLOGY, 2012, 30 (10) : 1099 - 1104
  • [25] The simulation of stresses and strains in the drying of Pinus radiata sapwood: the effects of board geometry
    Brooke, AS
    Langrish, TAG
    COMPUTERS & CHEMICAL ENGINEERING, 1997, 21 (11) : 1271 - 1281
  • [26] A THEORETICAL AND EXPERIMENTAL INVESTIGATION OF THE CONVECTIVE DRYING OF AUSTRALIAN PINUS-RADIATA TIMBER
    SUTHERLAND, JW
    TURNER, IW
    NORTHWAY, RL
    DRYING TECHNOLOGY, 1994, 12 (08) : 1815 - 1839
  • [27] Assessment of air emissions from industrial kiln drying of pinus radiata wood
    McDonald A.G.
    Dare P.H.
    Gifford J.S.
    Steward D.
    Riley S.
    Holz als Roh - und Werkstoff, 2002, 60 (03) : 181 - 190
  • [28] The influence of compression wood on the drying curves of Pinus radiata dried in dehumidifier conditions
    Davis, CP
    Carrington, CG
    Sun, ZF
    DRYING TECHNOLOGY, 2002, 20 (10) : 2005 - 2026
  • [29] Model predicted effect of process variables on kiln drying of Pinus radiata boards
    Haque, M. N.
    Riley, S. G.
    Langrish, T. A. G.
    Pang, S.
    DRYING TECHNOLOGY, 2007, 25 (1-3) : 455 - 461
  • [30] THE EFFECT OF DRYING SCHEDULE ON THE RADIAL PERMEABILITY OF PINUS-RADIATA D DON
    BOOKER, RE
    EVANS, JM
    HOLZ ALS ROH-UND WERKSTOFF, 1994, 52 (03) : 150 - 156