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dc.contributor.authorHAYS JAen_US
dc.contributor.editoren_US
dc.contributor.otherAvailable from University Microfilms 300 N Zeeb Rd Ann Arbor, Mich 48106, Order No 70-18, 247, Xerox Copy $11 50; Microfilm $4 00 Ph D Dissertation, 1970 253 Pen_US
dc.date.accessioned2010-02-15T17:15:30Z
dc.date.available2010-02-15T17:15:30Z
dc.date.issued247en_US
dc.identifier.urihttp://hdl.handle.net/1969.3/23219
dc.descriptionMICH-18en_US
dc.description.abstractA FINITE-DIFFERENCE, STEADY-STATE MATHEMATICAL MODEL WAS EMPLOYED TO PREDICT SUMMER DISSOLVED OXYGEN PROFILES RESULTING FROM WASTEWATER DISCHARGES AND OTHER INFLUENCES FOR A ONE-DIMENSIONAL, HOMOGENOUS ESTUARINE SYSTEM SUCH AS THE HOUSTON SHIP CHANNEL. RESULTS SHOW THAT SUBSTANTIAL SAVINGS COULD BE MADE THROUGH THE APPLICATION OF SYSTEM ANALYSES AND OPTIMIZATION METHODS TO WATER QUALITY PROBLEMS ON THE UPPER REACHES OF THIS CHANNEL. LARGE BENTHAL DEPOSITS CAN APPARENTLY PREVENT AEROBIC CONDITIONS FROM OCCURRING IN THE UPPER CHANNEL EVEN WHEN BIOLOGICAL WASTE TREATMENT IS NECESSITATED FOR ALL WASTE DISCHARGERS. (GOTTSCHALK-TEXAS)en_US
dc.description.urihttp://gbic.tamug.edu/request.htmen_US
dc.publisheren_US
dc.relation.ispartofseries50797.00en_US
dc.relation.urien_US
dc.subject*COST ANALYSIS;*DISSOLVED OXYGEN;*HOUSTON SHIP CHANNEL;*MATHEMATICAL MO ELEMENT ANALYSIS;*SYSTEMS ANALYSIS;*Texas;AEROBIC CONDITIONS;ALGORITHMS;BENTHAL PROGRAMMING;BIOLOGICAL TREATMENT;DISCHARGE;DISSOLVED OXYGEN;Estuarine environment;Houston;Houston Ship Channel;OPTIMIZATION;Oxygen;SW 3020 Sources and fate of pollution;SW 3070 Water quality control;SW 4010 Techniques of planning;Texas;WASTE DISCHARGERS;WASTE TREATMENT;WATER;Water quality;en_US
dc.titleA least cost analysis for the Houston Ship Channelen_US
dc.typeJournalen_US
dc.placeen_US
dc.seriesen_US
dc.vol-issue()en_US
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dc.locationen_US
dc.scaleen_US
dc.latitudeen_US
dc.longitudeen_US
dc.contract-noen_US
dc.notesen_US
dc.degreeen_US
dc.acquisition-srcDownloaded from-Water Resources Abstractsen_US
dc.description-otheren_US
dc.universityen_US
dc.historyen_US
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