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3-D Mapping of Ocean Water Masses and Provinces Matthew Oliver (U. Del.) Matthew Grossi (U. Del) Erick Geiger (U. Del) Argo Profile DistributionProvince.

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Presentation on theme: "3-D Mapping of Ocean Water Masses and Provinces Matthew Oliver (U. Del.) Matthew Grossi (U. Del) Erick Geiger (U. Del) Argo Profile DistributionProvince."— Presentation transcript:

1 3-D Mapping of Ocean Water Masses and Provinces Matthew Oliver (U. Del.) Matthew Grossi (U. Del) Erick Geiger (U. Del) Argo Profile DistributionProvince Distribution

2 Mapping Dynamic Ocean Biogeographic Provinces Andrew Irwin (Mt. Allison University) Matthew Oliver (U. Del.) Oscar Schofield (Rutgers) Paul Falkowski (Rutgers) Thursday 12:15pm

3 Typical Argo Profile

4 Reflections on the European Pine Sawfly Holling, C.S. 1959. The components of predation as revealed by a study of small mammal predation of the European pine sawfly. Canad. Entomol. 91: 293-320. Holling, C.S. 1959. Some characteristics of simple types of predation and parasitism. Canad. Entomol. 91: 385-398. Prey switching curve

5 Reflections on the European Pine Sawfly Holling, C.S. 1959. The components of predation as revealed by a study of small mammal predation of the European pine sawfly. Canad. Entomol. 91: 293-320. Holling, C.S. 1959. Some characteristics of simple types of predation and parasitism. Canad. Entomol. 91: 385-398. No. of Prey Killed by One Predator Prey Density No. of Prey Killed by One Predator A=10 B=15 A/2

6 Reflections on the European Pine Sawfly No. of Prey Killed by One Predator Prey Density No. of Prey Killed by One Predator A=10 B=15 A/2

7 Modified Holling III Curve D C E A=4.1 B=147 C=1022 D=0.005 E=11.3 A=7.3 B=137 C=1021 D=0.004 E=1.04 A=0.08 B=143 C=1027 D=0.005 E=15.7 All Models are wrong, some are useful – G. Box

8 Argo Analysis ARGO DATA ASSESSMENT USING QUALITY CONTROL (QC) FLAGS No. of profilesRemaining Downloaded500253 Missing variables2000498253 Failed QC82962415291 Profile <10 m920414371 Total analyzed:414371

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10 B

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12 D

13 E

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15 Future Work Work on minimizing the number of parameters to fit a curve Moving analysis beyond density and into temperature and salinity Moving analysis into coastal ocean Matching with Water Masses and Biomes

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