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Detection frequency of Pinus thunbergii roots by ground-penetrating radar is related to root biomass

机译:探地雷达对黑松根系的检测频率与根系生物量有关

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Aims: Tree roots in forest soils can be detected using nondestructive ground-penetrating radar (GPR). However, few studies have investigated root detection frequency; i.e., how many and which roots are identified in a radar profile out of the total quantity of roots present in a forest stand. The objective of this study was to quantify root detection frequency and uncertainty, including relationships between root detection and radar parameters using 1.5 GHz GPR in a Pinus thunbergii forest on sandy soils. Methods: We compared the vertical distribution of 829 excavated roots with distributions identified visually in radar profiles using GPR on 17 transects. Results: The detection frequency for number of roots less than 1.0 cm in diameter was only 6.6%, but 54% of roots that were larger than 1.0 cm were detected. Roots larger than 2.0 cm were identified with less frequency by GPR at deeper depths (20-30 cm) than were shallower roots. Conclusion: Our study indicates that GPR methods estimate root biomass to be 68% of the excavated root biomass and that the detection frequency for number of roots in radar profiles using GPR is related to root biomass, although there is uncertainty in the attenuation of radar waves with depth, soil water condition and root orientation.
机译:目的:可以使用无损探地雷达(GPR)检测森林土壤中的树根。但是,很少有研究调查根检测频率。即,在林分中存在的根的总数中,雷达轮廓中识别出多少根。这项研究的目的是量化在沙质松树林中使用1.5 GHz GPR的根检测频率和不确定性,包括根检测与雷达参数之间的关系。方法:我们比较了829个发根的垂直分布与在17个样带上使用GPR在雷达剖面中目视识别的分布。结果:直径小于1.0 cm的根的检出频率仅为6.6%,但检测到大于1.0 cm的根的检出率为54%。 GPR在较深的深度(20-30 cm)比较浅的根识别出频率小于2.0 cm的根。结论:我们的研究表明,尽管雷达波的衰减存在不确定性,但GPR方法估计根生物量占挖掘的根生物量的68%,并且使用GPR探测雷达剖面中根数的频率与根生物量有关。深度,土壤水分状况和根系取向。

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