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Effects of finite-width pulses in the pulsed-field gradient measurement of the diffusion coefficient in connected porous media

机译:有限宽度脉冲在脉冲场梯度测量中连接多孔介质中扩散系数的影响

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摘要

We analytically compute the apparent diffusion coefficient D_(app) for an open restricted geometry, such as an extended porous medium, for the case of a pulsed-field gradient (PFG) experiment with finite-width pulses. In the short-and long-time limits, we give explicit, model-independent expressions that correct for the finite duration of the pulses and can be used to extract the pore surface-to-volume (S/V) ratio as well as the tortuosity. For all times, we compute D_(app) using a well-established model form of the actual time-dependent diffusion coefficient D(t) that can be obtained from an ideal narrow-pulse PFG. We compare D_(app) and D(t) and find that, regardless of pulse width and geometry-dependent parameters, the two quantities deviate by less than 20%. These results are in sharp contrast with the studies on closed geometries [J. Magn. Reson. A 117 (1995) 209], where the effects of finite gradient-pulse widths are large. The analytical results presented here can be easily adapted for different pulse protocols and time sequences.
机译:对于具有有限宽度脉冲的脉冲场梯度(PFG)实验,我们通过分析计算出开放受限的几何形状(如扩展的多孔介质)的表观扩散系数D_(app)。在短期和长期范围内,我们给出了明确的,与模型无关的表达式,这些表达式可校正脉冲的有限持续时间,并且可用于提取孔的表面积与体积之比(S / V)以及曲折。对于所有时间,我们都使用可以从理想窄脉冲PFG获得的实际时间相关扩散系数D(t)的公认模型形式来计算D_(app)。我们比较D_(app)和D(t),发现无论脉冲宽度和几何参数如何,两个量的偏差都小于20%。这些结果与封闭几何的研究形成了鲜明的对比[J.真是的雷森A 117(1995)209],其中有限梯度脉冲宽度的影响很大。此处介绍的分析结果可轻松适用于不同的脉冲协议和时间序列。

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