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Laboratory longitudinal diffusion tests: 1. Dimensionless formulations and validity of simplified solutions

机译:实验室纵向扩散测试:1.无量纲公式和简化解决方案的有效性

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To obtain reliable diffusion parameters for diffusion testing, multiple experiments should not only be cross-checked but the internal consistency of each experiment should also be verified. In the through- and in-diffusion tests with solution reservoirs, test interpretation of different phases often makes use of simplified analytical solutions. This study explores the feasibility of steady, quasi-steady, equilibrium and transient-state analyses using simplified analytical solutions with respect to (ⅰ) valid conditions for each analytical solution, (ⅱ) potential error, and (ⅲ) experimental time. For increased generality, a series of numerical analyses are performed using unified dimensionless parameters and the results are all related to dimensionless reservoir volume (DRV) which includes only the sorptive parameter as an unknown. This means the above factors can be investigated on the basis of the sorption properties of the testing material and/or tracer. The main findings are that steady, quasi-steady and equilibrium-state analyses are applicable when the tracer is not highly sorptive. However, quasi-steady and equilibrium-state analyses become inefficient or impractical compared to steady state analysis when the tracer is non-sorbing and material porosity is significantly low. Systematic and comprehensive reformulation of analytical models enables the comparison of experimental times between different test methods. The applicability and potential error of each test interpretation can also be studied. These can be applied in designing, performing, and interpreting diffusion experiments by deducing DRV from the available information for the target material and tracer, combined with the results of this study.
机译:为了获得用于扩散测试的可靠扩散参数,不仅应交叉检查多个实验,还应验证每个实验的内部一致性。在具有溶液储器的通过和扩散测试中,不同阶段的测试解释通常使用简化的分析解决方案。本研究探讨了使用简化分析解决方案的稳态,准稳态,平衡和瞬态分析的可行性,这些分析方案涉及(ⅰ)每个分析解决方案的有效条件,(ⅱ)潜在误差和(ⅲ)实验时间。为了提高通用性,使用统一的无量纲参数进行了一系列数值分析,结果都与无量纲储层体积(DRV)有关,该体积仅包含未知的吸附参数。这意味着可以根据测试材料和/或示踪剂的吸附特性研究上述因素。主要发现是,当示踪剂的吸附性不高时,可以进行稳态,准稳态和平衡态分析。但是,当示踪剂不吸附且材料孔隙率非常低时,与稳态分析相比,准稳态和平衡态分析效率低下或不切实际。对分析模型进行系统而全面的重新制定,可以比较不同测试方法之间的实验时间。还可以研究每个测试解释的适用性和潜在错误。通过将目标材料和示踪剂的可用信息推论得出DRV,并结合本研究的结果,可以将这些方法应用于设计,执行和解释扩散实验。

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