Title
Estimating Tree-Root Biomass in Different Depths Using Ground-Penetrating Radar: Evidence from a Controlled Experiment
Abstract
Roots have important functions in the ecosystem. Therefore, establishing root-related parameters such as root size, biomass, and 3-D architecture is necessary. Traditional methods for measuring tree roots are labor intensive and destructive to nature, limiting quantitative and repeated assessments in long-term research. Ground-penetrating radar (GPR) provides a nondestructive method for measuring tree roots. This study investigates the feasibility of a GPR system with 500-MHz, 900-MHz, and 2-GHz measurement frequencies for detecting tree roots and estimating root biomass under controlled experimental conditions in a sandy area. After energy attenuation correction and velocity analysis, not only the individual root in subsurface is able to be located but also the parameters that correlate well with root biomass can be extracted from the processed GPR data. The major findings were as follows. First, both the amplitude and amplitude-area indices were confirmed to be more effective for estimating root biomass after attenuation-effect compensation. This result suggests that the calibration of GPR wave-attenuation effects and velocity changes with depth are helpful in estimating root biomass from GPR parameters. Second, the selection of GPR system frequency was mainly dependent on field conditions, particularly soil water content. Lower frequency was recommended for developing root biomass estimation model under varied soil conditions. Third, the new method based on the metal reflector experiment was effective and easy to perform in situ for attenuation-effect correction.
Year
DOI
Venue
2013
10.1109/TGRS.2012.2224351
IEEE T. Geoscience and Remote Sensing
Keywords
Field
DocType
velocity analysis,nondestructive root measurement,sandy area,moisture,frequency 500 mhz,metal reflector experiment,wave attenuation,tree roots,soil water content,root-related parameters,root size,depths,remote sensing by radar,3d architecture,ecosystem,ground-penetrating radar (gpr),frequency 2 ghz,nondestructive method,tree-root biomass,ground-penetrating radar,ground penetrating radar,controlled experiment,vegetation mapping,soil,root biomass after attenuation-effect compensation,gpr,vegetation,lower frequency,root biomass,ecology,frequency 900 mhz,attenuation,biomass
Radar,Biomass,Moisture,Ground-penetrating radar,Remote sensing,Correction for attenuation,Amplitude,Calibration,Mathematics,Soil water
Journal
Volume
Issue
ISSN
51
6
0196-2892
Citations 
PageRank 
References 
4
0.89
2
Authors
5
Name
Order
Citations
PageRank
Xihong Cui1277.63
Li Guo241.22
Jin Chen325931.87
Xuehong Chen44711.12
Xiaolin Zhu59014.50