Electrical resistivity imaging of tree trunks

被引:46
|
作者
al Hagrey, S. A. [1 ]
机构
[1] Univ Kiel, Inst Geosci, D-24098 Kiel, Germany
关键词
D O I
10.3997/1873-0604.2005043
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
An electrical resistivity technique using a ring array of needle electrodes is applied to image the internal electrical structures of the trunks of living standing trees and trunk disks. Measured electrical resistance data are inverted Using a 2D iterative finite-element algorithm which incorporates the cylindrical geometry of the trunk. The technique is successfully tested using synthetic models showing that the resolution obtained when mapping anomalous zones inside the trunk is higher for the dipole-dipole configuration than for the Wenner configuration. Measurements on a trunk column show a well-established inverse relationship between the imaged resistivity and the moisture content determined from wood cores. Healthy tree trunks always sliow a concentric ring structure with a central maximum of resistivity, which decreases towards the Outside, cot-responding to ail increase in moisture from the inner dry heartwood to the Outer wet ring of sapwood. Asymmetry in the ring structure is interpreted as the influence of branching or the direction of sunshine and wind. Strong local resistivity anomalies are related to infections causing wet, rotting or dry cavities. The resistivity of the heartwood is a maximum in olive and oak trunks, intermediate in young fruit trees and a minimum in cork oak trunks that are considered to be wet. The resistivity imaging technique can also monitor the dynamic process of sapflow if adequate tracers are used.
引用
收藏
页码:179 / 187
页数:9
相关论文
共 50 条
  • [31] Tree root imaging by electrical resistivity tomography: geophysical tools to improve understanding of deep root structure and rhizospheric processes
    Pandurang Balwant
    V. Jyothi
    Paras R. Pujari
    Shalini Dhyani
    P. Verma
    C. Padmakar
    R. Quamar
    J. Ramesh
    S. Khare
    M. Mitkari
    Tropical Ecology, 2022, 63 : 319 - 324
  • [32] An interesting ice-formation on tree trunks
    Naumann, A
    PHYSIKALISCHE ZEITSCHRIFT, 1935, 36 : 445 - 447
  • [33] TREE BRANCH ATTACHMENT TO TRUNKS AND BRANCH PRUNING
    SHIGO, AL
    HORTSCIENCE, 1990, 25 (01) : 54 - 59
  • [34] Tree trunks, growth and reversible variations in circumference
    MacDougal, DT
    SCIENCE, 1925, 61 : 370 - 372
  • [35] Electrical resistivity imaging for the characterization of the Montaguto landslide (southern Italy)
    Bellanova, Jessica
    Calamita, Giuseppe
    Giocoli, Alessandro
    Luongo, Raffaele
    Macchiato, Maria
    Perrone, Angela
    Uhlemann, Sebastian
    Piscitelli, Sabatino
    ENGINEERING GEOLOGY, 2018, 243 : 272 - 281
  • [36] Chlorinated ethenes from groundwater in tree trunks
    Vroblesky, DA
    Nietch, CT
    Morris, JT
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1999, 33 (03) : 510 - 515
  • [37] Expulsion of gas and liquids from tree trunks
    Haasis, F. W.
    SCIENCE, 1931, 74 (1917) : 311 - 312
  • [38] TEMPERATURE OF TREE TRUNKS-CALCULATED AND OBSERVED
    DERBY, RW
    GATES, DM
    AMERICAN JOURNAL OF BOTANY, 1966, 53 (6P1) : 580 - &
  • [39] An ICPSO-RBFNN nonlinear inversion for electrical resistivity imaging
    Jiang Fei-bo
    Dai Qian-wei
    Dong Li
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2016, 23 (08) : 2129 - 2138
  • [40] An ICPSO-RBFNN nonlinear inversion for electrical resistivity imaging
    Fei-bo Jiang
    Qian-wei Dai
    Li Dong
    Journal of Central South University, 2016, 23 : 2129 - 2138