Mixing at Cross Junctions in Water Distribution Systems. II: Experimental Study

Author:

Austin R. G.1234,Waanders B. van Bloemen1234,McKenna S.1234,Choi C. Y.1234

Affiliation:

1. Graduate Research Assistant, Dept. of Agricultural and Biosystems Engineering, The Univ. of Arizona, Tucson, AZ 85721. E-mail: rgaustin@email.arizona.edu

2. Research Scientist, Sandia National Laboratories, P.O. Box 5800, MS-0735, Albuquerque, NM 87185-0735. E-mail: bartv@sandia.gov

3. Research Scientist, Sandia National Laboratories, P.O. Box 5800, MS-0735, Albuquerque, NM 87185-0735. E-mail: samcken@sandia.gov

4. Professor, Agricultural and Biosystems Engineering, The Univ. of Arizona, Tucson, AZ 85721. E-mail: cchoi@arizona.edu

Publisher

American Society of Civil Engineers (ASCE)

Subject

Management, Monitoring, Policy and Law,Water Science and Technology,Geography, Planning and Development,Civil and Structural Engineering

Reference5 articles.

1. Mixing Mechanisms in a Pair of Impinging Jets

2. EPA. (2002). “EPANET 2.0.” ⟨ http://www.epa.gov/nrmrl/wswrd/epanet.html#Downloads ⟩ (Jan. 10 2007).

3. Mixing at Cross Junctions in Water Distribution Systems. I: Numerical Study

4. Romero-Gomez P. Choi C. Y. van Bloemen Waanders B. and McKenna S. A. (2006). “Transport phenomena at intersections of pressurized pipe systems.” Proc. 8th Annual Water Distribution System Analysis Symp. Cincinnati.

5. van Bloemen Waanders B. Hammond G. Shadid J. Collis S. and Murray R. (2005). “A comparison of Navier-Stokes and network models to predict chemical transport in municipal water distribution systems.” Proc. World Water and Environmental Resources Congress Anchorage Alaska.

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