TECHNICAL PAPERS
Apr 1, 2009

Case Study: Three-Dimensional Hydrodynamic Model of a Power Plant Thermal Discharge

Publication: Journal of Hydraulic Engineering
Volume 135, Issue 4

Abstract

A three-dimensional hydrodynamic model, MIKE 3, was used to assess the effects of the cooling water thermal plume from the 877MW Charles Poletti power plant that discharges to the East River in Queens, New York City. The East River is a tidal strait that connects New York Harbor and Long Island Sound—two large, out of phase estuaries with complex hydrodynamics. The study was additionally required to account for the thermal discharge of a larger, 1253MW power plant adjacent to Poletti. The model used a flexible mesh formulation based on unstructured triangular elements and was successfully calibrated with triaxial thermal field survey data. After calibration, the model was used to demonstrate that under worst case conditions the resulting thermal plume did not exceed the regulatory thermal criteria.

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References

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Information

Published In

Go to Journal of Hydraulic Engineering
Journal of Hydraulic Engineering
Volume 135Issue 4April 2009
Pages: 247 - 256

History

Received: Jul 16, 2007
Accepted: Sep 16, 2008
Published online: Apr 1, 2009
Published in print: Apr 2009

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Authors

Affiliations

Scott A. Lowe [email protected]
Associate Professor, Dept. of Civil & Environmental Engineering, Manhattan College, Riverdale, NY 10471; formerly, HDR, One Blue Hill Plaza, Pearl River, NY 10965; and, HDR, One Blue Hill Plaza, Pearl River, NY 10965 (corresponding author). E-mail: [email protected]
Fred Schuepfer
HDR, One Blue Hill Plaza, Pearl River, NY 10965.
Dennis J. Dunning, Ph.D.
Administrator, Aquatic Program, New York Power Authority, 123 Main St., White Plains, NY 10601.

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