The assessment of high recharge areas using DO indicators and recharge potential analysis: a case study of Taiwan’s Pingtung plain

Author:

Tsai Jui-Pin,Chen Yu-Wen,Chang Liang-Cheng,Chen Wen-Fu,Chiang Chung-Jung,Chen You-Cheng

Publisher

Springer Science and Business Media LLC

Subject

General Environmental Science,Safety, Risk, Reliability and Quality,Water Science and Technology,Environmental Chemistry,Environmental Engineering

Reference27 articles.

1. Aimrun W, Amin M, Eltaib S (2004) Effective porosity of paddy soils as an estimation of its saturated hydraulic conductivity. Geoderma 121(3):197–203

2. Arnold TL, Friedel MJ (2000) Effects of land use on recharge potential of surficial and shallow bedrock aquifers in the upper illinois river basin. US Geol Surv Water Resour Invest, 00–4027

3. Bou Kheir R, Shaban A, Girard M-C, Khawlie M, Abdallah C (2003) Caractérisation morpho-pédologique des zones karstiques du liban sensibilité des sols à l’érosion hydrique. Science et changements planétaires/Sécheresse 14(4):247–255

4. Bouwer H (2002) Artificial recharge of groundwater: hydrogeology and engineering. Hydrogeol J 10(1):121–142

5. Braun G, Levine N, Roberts S, Samel A (2003) A geographic information systems methodology for the identification of groundwater recharge areas in waukesha county, wisconsin. Environ Eng Geosci 9(3):267–278

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