Water Flow and Heat Transport in the Hyporheic Zone of Island Riparian: A Field Experiment and Numerical Simulation
Author:
Affiliation:
1. State Key Laboratory of Eco-hydraulics in Northwest Arid Region Xi'an University of Technology Xi'an 710048, China
2. Changjiang River Scientific Research Institute Wuhan 430010, Hu Bei, China
Publisher
Coastal Education and Research Foundation
Subject
Earth-Surface Processes,Water Science and Technology,Ecology
Reference37 articles.
1. D. Liu, J. Zhao, X. Chen, et al. "Geosciences Journal." 22, "Dynamic processes of hyporheic exchange and temperature distribution in the riparian zone in response to dam-induced water fluctuations." 465 (2018)
2. M.T. van Genuchten, "Soil Science Society of America Journal." 44, "A closed-form equation for predicting the hydraulic conductivity of unsaturated soils." 892 (1980)
3. A.S. Bhaskar, J.W. Harvey, E.J. Henry, "Water Resources Research." 48, "Resolving hyporheic and groundwater components of streambed water flux using heat as a tracer." (2012)
4. M.A. Briggs, L.K. Lautz, J.M. McKenzie, et al. "Water Resources Research." 48, "Using high-resolution distributed temperature sensing to quantify spatial and temporal variability in vertical hyporheic flux." (2012)
5. X. Chen, C. Zheng, Y. Yuan, "Advances in Water Science." 30, "Modeling the impacts of streambed sediment heterogeneity on hyporheic exchange." 220 (2019)
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