Tree species effects on stand transpiration in northern Wisconsin

被引:134
作者
Ewers, BE [1 ]
Mackay, DS
Gower, ST
Ahl, DE
Burrows, SN
Samanta, SS
机构
[1] Univ Wisconsin, Dept Forest Ecol & Management, Madison, WI 53706 USA
[2] Univ Wisconsin, Inst Environm Studies, Ctr Environm Remote Sensing, Madison, WI 53715 USA
关键词
water transport; whole-tree water use; wetlands; sapwood;
D O I
10.1029/2001WR000830
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
[1] We quantified canopy transpiration (E-C) using sap flux measurements representing the four major forest types (northern hardwoods, conifer, aspen/fir, and forested wetland) around the WLEF-TV tall tower in northern Wisconsin. In order to scale individual sap flux measurements to E-C, we quantified the amount of sapwood area per unit ground area and the spatial distribution of sap flux within trees. Contrary to our hypothesis that all tree species would have the same positive relationship between tree diameter and sapwood depth, white cedar and speckled alder, both wetland species, showed no relationship. We also hypothesized that the conifer trees would have a lower whole tree hydraulic conductance than deciduous trees. We actually discovered that white cedar had the highest hydraulic conductance. Our third hypothesis, that sapwood area per unit ground area would determine stand E-C, was not rejected. The resulting average daily E-C values over 53 days (23 June to 16 August 2000) from combining sap flux and sapwood area per unit ground area were 1.4, 0.8, 2.1, and 1.4 mm d(-1) for conifer, northern hardwoods, aspen/fir, and forested wetland cover types, respectively. Average daily E-C was only explained by an exponential saturation with daily average vapor pressure deficit.
引用
收藏
页码:8 / 1
页数:11
相关论文
共 74 条
  • [1] Arneth A, 1996, TREE PHYSIOL, V16, P247
  • [2] Measurements of carbon dioxide on very tall towers: results of the NOAA/CMDL program
    Bakwin, PS
    Tans, PP
    Hurst, DF
    Zhao, CL
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 1998, 50 (05): : 401 - 415
  • [3] A COMPARISON OF THE STRUCTURE, PRIMARY PRODUCTIVITY, AND TRANSPIRATION OF CYPRESS ECOSYSTEMS IN FLORIDA
    BROWN, S
    [J]. ECOLOGICAL MONOGRAPHS, 1981, 51 (04) : 403 - 427
  • [4] BURROWS SN, 2002, IN PRESS ECOSYSTEMS
  • [5] XYLEM WATER-FLOW IN A CRACK WILLOW TREE (SALIX-FRAGILIS L) IN RELATION TO DIURNAL CHANGES OF ENVIRONMENT
    CERMAK, J
    JENIK, J
    KUCERA, J
    ZIDEK, V
    [J]. OECOLOGIA, 1984, 64 (02) : 145 - 151
  • [6] Leaf area index of boreal forests: Theory, techniques, and measurements
    Chen, JM
    Rich, PM
    Gower, ST
    Norman, JM
    Plummer, S
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1997, 102 (D24) : 29429 - 29443
  • [7] ASSESSMENT OF TRANSPIRATION ESTIMATES FOR PICEA-ABIES TREES DURING A GROWING-SEASON
    CIENCIALA, E
    LINDROTH, A
    CERMAK, J
    HALLGREN, JE
    KUCERA, J
    [J]. TREES-STRUCTURE AND FUNCTION, 1992, 6 (03): : 121 - 127
  • [8] Clearwater MJ, 1999, TREE PHYSIOL, V19, P681
  • [9] IMPROVEMENT OF THE HEAT PULSE METHOD FOR DETERMINING SAP FLOW IN TREES
    COHEN, Y
    FUCHS, M
    GREEN, GC
    [J]. PLANT CELL AND ENVIRONMENT, 1981, 4 (05) : 391 - 397
  • [10] A METHOD FOR DETERMINING WATER TRANSPORT IN TREES
    DAUM, CR
    [J]. ECOLOGY, 1967, 48 (03) : 425 - &