Physical Processes in Near Field Buoyant Plumes (Paperback)


Buoyant plumes are characterized by a distinct contrast in properties between plume and ambient water. An understanding of their physics is crucial for interdisciplinary study of estuarine and coastal regions because discharge flow is often a source of nutrients, biological species, sediment, and toxic contaminants. This book investigates the nature of physical processes associated with near field buoyant plumes, and describes the relationship between processes. Two field sites, one thermal plume in Massachusetts, USA, and the Merrimack River plume, Massachusetts, USA are studied. Observed mixing in the near-field of the thermal plume is driven by bottom friction. The industrial plume studied here is dynamically similar to larger geophysical plumes, but differs in important aspects that can be fully characterized by the initial aspect ratio of the discharging plume. Estimates of three non-dimensional parameters, which represent mixing, spreading, and the bulk Richardson number, suggest that a quadratic relationship exists between mixing and spreading for the river plume. Estimates also yielded time scales for turbulence evolution that are consistent with values in literature.

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Product Description

Buoyant plumes are characterized by a distinct contrast in properties between plume and ambient water. An understanding of their physics is crucial for interdisciplinary study of estuarine and coastal regions because discharge flow is often a source of nutrients, biological species, sediment, and toxic contaminants. This book investigates the nature of physical processes associated with near field buoyant plumes, and describes the relationship between processes. Two field sites, one thermal plume in Massachusetts, USA, and the Merrimack River plume, Massachusetts, USA are studied. Observed mixing in the near-field of the thermal plume is driven by bottom friction. The industrial plume studied here is dynamically similar to larger geophysical plumes, but differs in important aspects that can be fully characterized by the initial aspect ratio of the discharging plume. Estimates of three non-dimensional parameters, which represent mixing, spreading, and the bulk Richardson number, suggest that a quadratic relationship exists between mixing and spreading for the river plume. Estimates also yielded time scales for turbulence evolution that are consistent with values in literature.

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Product Details

General

Imprint

VDM Verlag

Country of origin

United States

Release date

November 2010

Availability

Expected to ship within 10 - 15 working days

First published

November 2010

Authors

Dimensions

229 x 152 x 9mm (L x W x T)

Format

Paperback - Trade

Pages

152

ISBN-13

978-3-639-29996-0

Barcode

9783639299960

Categories

LSN

3-639-29996-5



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