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dc.contributor.advisorGlenn R. Flierl.en_US
dc.contributor.authorWood, Christie L. (Christie Lynn)en_US
dc.contributor.otherWoods Hole Oceanographic Institution.en_US
dc.date.accessioned2008-09-03T15:10:48Z
dc.date.available2008-09-03T15:10:48Z
dc.date.copyright2007en_US
dc.date.issued2007en_US
dc.identifier.urihttp://hdl.handle.net/1721.1/42280
dc.descriptionThesis (S.M.)--Joint Program in Physical Oceanography (Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sciences; and the Woods Hole Oceanographic Institution), 2007.en_US
dc.descriptionIncludes bibliographical references (p. 81-85).en_US
dc.description.abstractHarmful algal blooms (HABs) of A. fundyense, more commonly known as "red tides", are a serious economic and public health concern in the Gulf of Maine. Until recently, there was very little known about the mechanisms regulating the observed spatial and temporal distributions of A. fundyense in this region. In the beginning of this work a review of previous research on A. fundyense and the mechanisms controlling their spatial and temporal distributions in the Gulf of Maine is presented. One of the major conclusions that can be drawn from previous work is that a thorough understanding of the interactions between river plumes is essential to our understanding of this problem. The rest of this thesis intends to contribute to the understanding of these plume interactions and their effect on the transport of A. fundyense. Mixing between two interacting river plumes with various buoyancies is investigated through laboratory experiments. These experiments indicate that under these idealized conditions, there was little mixing between the plumes after their initial interaction. A numerical model is used to explore the effects of river mouth size and flux variations on the interaction between two plumes. It is shown that based on river mouth geometry and flow rates the effect of the southern plume on the path of the northern plume can be predicted. In the final section a simple NP model is coupled with the physical model to explore the possible effects of river plume interaction on the distribution of A. fundyense. Based on our modeled results, it appears as if the southern river under certain conditions could temporarily act as a shield preventing A. fundyense from reaching the coast but that this was not a permanent state.en_US
dc.description.statementofresponsibilityby Christie L. Wooden_US
dc.format.extent85 p.en_US
dc.language.isoengen_US
dc.publisherMassachusetts Institute of Technologyen_US
dc.rightsM.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission.en_US
dc.rights.urihttp://dspace.mit.edu/handle/1721.1/7582en_US
dc.subjectJoint Program in Physical Oceanography.en_US
dc.subjectEarth, Atmospheric, and Planetary Sciences.en_US
dc.subjectWoods Hole Oceanographic Institution.en_US
dc.titleThe interaction of two coastal plumes and its effect on the transport of Alexandrium fundyenseen_US
dc.title.alternativeInteraction of 2 coastal plumes and its effect on the transport of A. fundyenseen_US
dc.typeThesisen_US
dc.description.degreeS.M.en_US
dc.contributor.departmentJoint Program in Physical Oceanographyen_US
dc.contributor.departmentWoods Hole Oceanographic Institutionen_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences
dc.identifier.oclc231850080en_US


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