首页> 外文OA文献 >Two-dimensional vertical moisture-pressure dynamics above groundwater waves: sand flume experiments and modelling
【2h】

Two-dimensional vertical moisture-pressure dynamics above groundwater waves: sand flume experiments and modelling

机译:地下水波上方的二维垂直水分压力动力学:沙槽实验和建模

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

This paper presents a new laboratory dataset on the moisture-pressure relationship above a dispersive groundwater wave in a two-dimensional vertical unconfined sand flume aquifer driven by simple harmonic forcing. A total of five experiments were conducted in which all experimental parameters were kept constant except for the oscillation period, which ranged from 268 s to 2449 s between tests. Moisture content and suction head sensor pairings were co-located at two locations in the unsaturated zone both approximately 0.2 m above the mean watertable elevation and respectively 0.3 m and 0.75 m from the driving head boundary. For all oscillation periods except for the shortest (T=268s), the formation of a hysteretic moisture-pressure scanning loop was observed. Consistent with the decay of the saturated zone groundwater wave, the size of the observed moisture-pressure scanning loops decayed with increasing distance landward and the decay rate is larger for the shorter oscillation periods. At the shortest period (T=268s), the observed moisture-pressure relationship was observed to be non-hysteretic but with a capillary capacity that differs from that of the static equilibrium wetting and drying curves. This finding is consistent with observations from existing one-dimensional vertical sand column experiments. The relative damping of the moisture content with distance landward is higher than that for the suction head consistent with the fact that transmission of pressure through a porous medium occurs more readily than mass transfer. This is further supported by the fact that observed phase lags for the unsaturated zone variables (i.e. suction head and moisture content) relative to the driving head are greater than the saturated zone variables (i.e. piezometric head). Harmonic analysis of the data reveals no observable generation of higher harmonics in either moisture or pressure despite the strongly non-linear relationship between the two. In addition, a phase lag of moisture content relative to the suction head was observed indicating that the response time of the moisture content to watertable motion is greater than that of the pore water pressure. The observed moisture-pressure dynamics are qualitatively reproduced using a hysteretic Richards’ equation model. However, quantitative differences exist which are likely to be due to previous findings that demonstrated that the Richards’ equation model is unable to accurately reproduce the observed watertable wave dispersion, particularly at shorter period oscillations.
机译:本文介绍了一个新的实验室数据集,该数据集是由简单谐波强迫驱动的二维垂直无限制砂槽含水层中分散地下水波上方的水分压力关系。总共进行了五个实验,其中除了振荡周期外,所有实验参数均保持恒定,振荡周期在两次测试之间介于268 s至2449 s之间。水分含量和吸头传感器配对共处在非饱和区的两个位置,均位于平均地下水位以上约0.2 m处,且距驱动头边界分别为0.3 m和0.75 m。对于除了最短时间(T = 268s)以外的所有振荡周期,观察到了滞后水分压力扫描回路的形成。与饱和带地下水波的衰减一致,所观测到的水压扫描环的大小随着向岸距离的增加而衰减,并且对于较短的振荡周期,衰减率更大。在最短的时间(T = 268s),观察到的湿压关系是非滞后的,但其毛细容量不同于静态平衡润湿和干燥曲线。这一发现与现有一维垂直砂柱实验的观察结果一致。随着距离的增加,水分含量的相对阻尼高于吸头,这与事实相比,通过多孔介质的压力传递比传质更容易发生。这进一步得到了以下事实的支持:相对于驱动头,非饱和区变量(即吸头和水分含量)的观测相位滞后大于饱和区变量(即测压头)。数据的谐波分析表明,尽管水分或压力之间没有明显的非线性关系,但在水分或压力下均未观察到高谐波的产生。另外,观察到水分相对于吸头的相位滞后,表明水分对吸水运动的响应时间大于孔隙水压力的响应时间。使用滞后的Richards方程模型定性地再现了观察到的水分压力动力学。但是,存在数量差异,这可能是由于先前的发现表明,理查兹方程模型无法准确地再现观测到的地下水波动,特别是在较短周期的振荡时。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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