期刊
JOURNAL OF ENVIRONMENTAL ENGINEERING
卷 131, 期 9, 页码 1260-1266出版社
ASCE-AMER SOC CIVIL ENGINEERS
DOI: 10.1061/(ASCE)0733-9372(2005)131:9(1260)
关键词
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Solute transport in natural streams is a complex phenomenon that involves both in-stream dispersion and mass exchange with the porous zones surrounding the water body., Due to the complex nature of the. riverine systems several models may be used to. simulate and analyze the transport of solutes with,different degrees of complexity. The bedform-induced hyporheic transport is a stream-subsurface exchange mechanism that can I be reproduced in controlled systems, such as laboratory flumes. Application of a simple Fickian diffusion model to laboratory data obtained with passive solutes and stationary bedforms proves successful within a range of durations of the contamination process. A dimensionless form of the diffusion coefficient, scaled with dynamic, physical, and geometric properties of the system is derived by comparison with another physically based model. A prediction of the dimensionless diffusion coefficient is obtained as a function of the timescale of the exchange process and is validated with a few sets of results from laboratory tests.
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