class='kwd-title'>Method name: Low-resistance pe'/> A modification of the constant-head permeameter to measure saturated hydraulic conductivity of highly permeable media
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A modification of the constant-head permeameter to measure saturated hydraulic conductivity of highly permeable media

机译:改进了用于测量高渗透性介质的饱和水力传导率的恒定压头渗透仪

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摘要

class="kwd-title">Method name: Low-resistance permeameter class="kwd-title">Keywords: Permeability, Low-resistance permeameter, Laboratory method, Soil physics, Reynolds number, Compression, Peat, Sphagnum class="head no_bottom_margin" id="abs0010title">AbstractThe saturated hydraulic conductivity (Ks) is a key characteristic of porous media, describing the rate of water flow through saturated porous media. It is an indispensable parameter in a broad range of simulation models that quantify saturated and/or unsaturated water flow.The constant-head permeameter test is a common laboratory method to determine Ks on undisturbed soil samples collected from the field. In this paper we show that the application of this conventional method may result in a biased Ks in the case of highly permeable media, such as the top layer of Sphagnum peat and gravel. Tubes in the conventional permeameter, that collect water under the sample, introduce a hydraulic head-dependent resistance for highly permeable media and result in an underestimation of Ks.We present a simple and low-budget alternative of the constant-head permeameter test that overcomes the disadvantages of conventional permeameters. The new method was successfully tested on intact highly permeable peatmoss collected from a northern peatland. class="first-line-outdent">
  • • Conventional constant-head permeameters underestimate Ks of highly permeable media due to flow resistance in tubing systems
  • • We developed the low-resistance permeameter to overcome this disadvantage.
  • • Testing of the low-resistance permeameter demonstrated no systematic bias and successful application for highly permeable media.
  • 机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>方法名称:低电阻渗透仪 class =“ kwd-title”>关键字:渗透率,低电阻渗透仪,实验室方法,土壤物理学,雷诺数,压缩率,泥炭,泥炭藓 class =“ head no_bottom_margin” id =“ abs0010title”>摘要饱和导水率(Ks)是关键多孔介质的特性,描述了通过饱和多孔介质的水流量。它是量化饱和和/或不饱和水流的广泛模拟模型中必不可少的参数。恒定水头渗透仪测试是确定从田间采集的未扰动土壤样品中Ks的常用实验室方法。在本文中,我们表明,在高渗透性介质(如泥炭藓泥炭和砾石的顶层)的情况下,这种常规方法的应用可能会导致Ks的偏差。传统的渗透仪中的水会收集样品下的水,对高渗透性介质会产生与水头有关的阻力,从而导致Ks的低估。我们提出了一种简单,低成本的恒压渗透仪测试方法,该方法克服了常规渗透仪的缺点。该新方法已在从北部泥炭地收集的完整的高渗透性泥炭上成功进行了测试。 class =“ first-line-outdent”> <!-list-behavior = simple prefix-word = mark-type = none max-label -size = 9->
  • •由于管道系统中的流动阻力,常规的恒定压头渗透仪会低估高渗透性介质的Ks
  • •低电阻渗透仪可以克服这一缺点。
  • •低电阻渗透仪的测试表明,对于高渗透性介质,没有系统性的偏差,也无法成功应用。
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