【24h】

Vibration-Induced Conductivity Fluctuation Measurement for Soil Bulk Density Analysis

机译:振动诱导的电导率波动测量,用于土壤堆积密度分析

获取原文
获取原文并翻译 | 示例

摘要

Soil bulk density affects water storage, water and nutrient movement, and plant root activity in the soil profile. Its measurement is difficult in field conditions. Vibration-induced conductivity fluctuation was investigated to quantify soil bulk density with possible field applications in the future. The AC electrical conductivity of soil was measured using a pair of blade-like electrodes while exposing the soil to periodic vibration. The blades were positioned longitudinally and transversally to the direction of the induced vibration to enable the calculation of a normalized index. The normalized index was expected to provide data independent from the vibration strength and to reduce the effect of soil salinity and water content. The experiment was conducted on natural and salinized fine sand at two moisture conditions and four bulk densities. The blade-shaped electrodes improved electrode-soil contact compared to cylindrical electrodes, and thereby, reduced measurement noise. Simulations on a simplified resistor lattice indicate that the transversal effect increases as soil bulk density decreases. Measurement of dry sand showed a negative correlation between the normalized conductivity fluctuation and soil bulk density for both longitudinal and transversal settings. The decrease in the transversal signal was smaller than expected. The wet natural and salinized soils performed very similarly as hypothesized, but their normalized VICOF response was not significant to bulk density changes. This lack of sensitivity might be attributed to the heavy electrodes and/or the specific vibration method used. The effects of electrode material, vibration method and soil properties on the experiment need further study.
机译:土壤容重会影响土壤剖面中的水分存储,水分和养分运移以及植物根系活动。在野外条件下很难测量。对振动引起的电导率波动进行了研究,以量化土壤体积密度,并可能在未来的田间应用。在将土壤暴露于周期性振动的同时,使用一对叶片状电极测量土壤的交流电导率。将叶片纵向和横向于感应振动的方向定位,以便能够计算归一化指数。期望归一化指数提供独立于振动强度的数据,并减少土壤盐分和水分含量的影响。实验是在两种湿度条件和四种堆积密度下,在天然和盐渍细砂上进行的。与圆柱形电极相比,叶片形电极改善了电极与土壤的接触,从而降低了测量噪声。在简化的电阻器晶格上进行的仿真表明,随着土壤容重的减小,横向效应会增加。在纵向和横向环境下,干砂的测量显示归一化的电导率波动与土壤容重之间呈负相关。横向信号的减小小于预期。潮湿的天然土壤和盐渍化土壤的表现与假设的非常相似,但归一化的VICOF响应对容重变化并不显着。这种敏感性的缺乏可能归因于较重的电极和/或所使用的特定振动方法。电极材料,振动方法和土壤性质对实验的影响有待进一步研究。

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