An inverse problem to simulate the transport of chloride in concrete by time–space fractional diffusion model

IF 1.1 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY
C. Feng, Xinhui Si, Botong Li, Limei Cao, Jing Zhu
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引用次数: 2

Abstract

In this paper, we proposed a fractional diffusion model to simulate the movement of chloride in concrete. In such complex porous structure some of the free chlorides, which are affected by the surrounding heterogeneous physical environment, will be bounded physically and chemically. Furthermore, experiments reveal that the interesting heavy-tailed phenomena appear in diffusion process. The time and spatial fractional derivatives are introduced to explain the anomalous diffusion and the dependence of medium properties. The numerical research shows that present model could better fit the experimental data and the diffusion of chloride in concrete is time-dependent and space-dependent.
用时空分数扩散模型模拟氯离子在混凝土中的输运的反问题
本文提出了一个分数扩散模型来模拟氯离子在混凝土中的运动。在这种复杂的多孔结构中,一些游离氯化物受到周围非均相物理环境的影响,在物理和化学上受到束缚。此外,实验还发现在扩散过程中出现了有趣的重尾现象。引入时间和空间分数阶导数来解释异常扩散和介质性质的依赖关系。数值研究表明,该模型能较好地拟合实验数据,氯离子在混凝土中的扩散具有时变和空变特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Inverse Problems in Science and Engineering
Inverse Problems in Science and Engineering 工程技术-工程:综合
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: Inverse Problems in Science and Engineering provides an international forum for the discussion of conceptual ideas and methods for the practical solution of applied inverse problems. The Journal aims to address the needs of practising engineers, mathematicians and researchers and to serve as a focal point for the quick communication of ideas. Papers must provide several non-trivial examples of practical applications. Multidisciplinary applied papers are particularly welcome. Topics include: -Shape design: determination of shape, size and location of domains (shape identification or optimization in acoustics, aerodynamics, electromagnets, etc; detection of voids and cracks). -Material properties: determination of physical properties of media. -Boundary values/initial values: identification of the proper boundary conditions and/or initial conditions (tomographic problems involving X-rays, ultrasonics, optics, thermal sources etc; determination of thermal, stress/strain, electromagnetic, fluid flow etc. boundary conditions on inaccessible boundaries; determination of initial chemical composition, etc.). -Forces and sources: determination of the unknown external forces or inputs acting on a domain (structural dynamic modification and reconstruction) and internal concentrated and distributed sources/sinks (sources of heat, noise, electromagnetic radiation, etc.). -Governing equations: inference of analytic forms of partial and/or integral equations governing the variation of measured field quantities.
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