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ISSN 2640-9747
Modeling the Pacific Ocean
Vol. 3, Issue 2, 2021May 18, 2021 PDT

Observing and Modeling the Pacific Ocean [Video]

Libe Washburn,
ocean observing systemsoceanographic radarinterdisciplinary oceanographyoceanic robotic vehiclescoastal oceanography
Copyright Logoccby-4.0 • https://doi.org/10.1525/001c.22189

Articles in Vol. 3, Issue 2, 2021

Vol. 3, Issue 2, 2021
  • Introduction: Modeling the Pacific Ocean
    Sebastian VehlkenChristina VagtWolf Kittler
  • “Pixels May Lose Kelp Canopy”: The Photomosaic as Epistemic Figure for the Satellite Mapping and Modeling of Seaweeds
    Melody Jue
  • What Climate Models can tell us about Pacific Climate Variability [Video]
    Samantha Stevenson
  • Sonic Pipelines at the Seafloor
    Lisa Y. Han
  • Observing and Modeling the Pacific Ocean [Video]
    Libe Washburn
  • Modeling the Pacific Ocean on the Computer [Video]
    Eckart Meiburg
  • Message in a Bottle: Operations and Epistemology of an Explorative Drifter [Video]
    Sotiria LampoudiChristina Vagt
  • Marine Reserve Design [Video]
    Douglas Steigerwald
  • Flipping the Ship: Ocean Waves, Media Orientations, and Objectivity at Sea
    Stefan Helmreich
  • Etherealization in a Racial Regime of Ownership: Marconi in O‘ahu, circa 1900
    Tyler Morgenstern
  • El Niño “The Boy” – Local Stories and Global Satellites in the Pacific Ocean [Video]
    Sabine Höhler
  • Charting the Pacific ca. 1850: Melville, Maury, Marx, and Mormons [Video]
    John Durham Peters
  • Latent Deep Space: Generative Adversarial Networks (GANs) in the Sciences
    Fabian Offert
Media+Environment
Washburn, Libe. 2021. “Observing and Modeling the Pacific Ocean [Video].” Media+Environment 3 (2). https://doi.org/10.1525/001c.22189.
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  • Figure 1: Graduate student Zoe Welch recovers a sampling bottle used for pH measurements in the coastal ocean. The bottle sample was collected by the drone in the foreground that is about to land.
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Abstract

Marine scientists incorporate a wide array of observations and models to understand the oceans, their dynamics, and the life they support. The development of new sensing technologies such as satellites, gliders, and robotic floats, as well as increasing public interest and funding for projects to investigate the ocean’s role in climate change, has transformed marine sciences into “big data” sciences. But the observational scientist still faces numerous obstacles in measuring ocean characteristics such as sea surface height, currents, temperature, salinity, water color, ocean chemistry, and undersea life: electromagnetic radiation does not readily penetrate its waters, which makes it harder to conduct observations and communicate with underwater instruments, and because oceans are full of life, so called “biofouling” is a challenge to observing, especially in the sun-lit layers near the surface. Nevertheless, new technologies such as robotic vehicles and new sensors are enabling observations throughout the ocean water column. These technologies, coupled with rapidly advancing ocean models, are revolutionizing our understanding of the marine biosphere. [Image: UCSB undergraduates Andie Rupprecht and Sean Jawetz recover a robotic stand-up paddle board used for measuring ocean currents. Photograph by Libe Washburn.]


Video available: https://vimeo.com/527397347

Figure 1
Figure 1:Graduate student Zoe Welch recovers a sampling bottle used for pH measurements in the coastal ocean. The bottle sample was collected by the drone in the foreground that is about to land.

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