...
首页> 外文期刊>The New Phytologist >Ultrasonic acoustic emissions in drought-stressed trees - more than signals from cavitation
【24h】

Ultrasonic acoustic emissions in drought-stressed trees - more than signals from cavitation

机译:干旱胁迫树木中的超声声发射-超过空化信号

获取原文
获取原文并翻译 | 示例
           

摘要

Ultrasonic acoustic emission (UAE) in trees is often related to collapsing water columns in the flow path as a result of tensions that are too strong (cavitation). However, in a decibel (dB) range below that associated with cavitation, a close relationship was found between UAE intensities and stem radius changes. UAE was continuously recorded on the stems of mature field-grown trees of Scots pine (Pinus sylvestris) and pubescent oak (Quercus pubescens) at a dry inner-Alpine site in Switzerland over two seasons. The averaged 20-Hz records were related to microclimatic conditions in air and soil, sap-flow rates and stem-radius fluctuations de-trended for growth (W). Within a low-dB range (27 pl 1 dB), UAE regularly increased and decreased in a diurnal rhythm in parallel with W on cloudy days and at night. These low-dB emissions were interrupted by UAE abruptly switching between the low-dB range and a high-dB range (36 pl 1 dB) on clear, sunny days, corresponding to the widely supported interpretation of UAE as sound from cavitations. It is hypothesized that the low-dB signals in drought-stressed trees are caused by respiration and/or cambial growth as these physiological activities are tissue water-content dependent and have been shown to produce courses of CO efflux similar to our courses of W and low-dB UAE.
机译:由于张力过大(气蚀),树木中的超声波发射(UAE)通常与流路中的水柱塌陷有关。但是,在低于与空化相关的分贝(dB)范围内,发现阿联酋强度与茎半径变化之间存在密切关系。在两个干燥季节内,在瑞士内高山干地上,阿联酋连续记录在苏格兰松树(Pinus sylvestris)和短毛栎(Quercus pubescens)的成熟田间生长树的茎上。 20 Hz的平均记录与空气和土壤中的微气候条件,树液流量和生长趋势趋于相反的茎半径波动有关(W)。在低dB范围(27 pl 1 dB)内,阿联酋在阴天和夜间与W平行地以昼夜节律规律地增加和减少。这些低分贝的发射被阿联酋在晴朗晴朗的晴天突然在低分贝范围和高分贝范围(36 pl 1 dB)之间切换而打断,这对应于广泛支持的将阿联酋解释为空化的声音。据推测,干旱胁迫树木中的低dB信号是由呼吸作用和/或冈比亚的生长引起的,因为这些生理活动取决于组织的水分含量,并已显示出与我们的W和W过程相似的CO外排过程。低分贝阿联酋。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号