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Ecosystem modeling with NEMURO within the PICES Climate Change and Carrying Capacity program

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  • Batchelder, Harold P.
  • Kashiwai, Makoto

Abstract

The Climate Change and Carrying Capacity (CCCC) program is the cross-disciplinary, integrative scientific program within the North Pacific Marine Science Organization (PICES). CCCC has provided coordination and facilitation for the first systematic, North Pacific basin-wide characterization of the impacts of large, low-frequency climate signals, regime shifts, and interannual variability, ENSO's, on coastal and oceanic ecosystems. CCCC activities are organized around task teams, one of which, MODEL, is devoted to improving lower trophic level ecosystem models and their coupling with both physical models and with higher trophic levels, especially fish populations. The NEMURO lower trophic level model that resulted from this international collaboration of ecosystem modelers has been used to examine a number of ecosystem responses (spatial patterns, temporal dynamics, and responses to future climate change scenarios). The NEMURO model is being used within CCCC to examine the dynamics of small pelagic fishes like herring, sardine, anchovy, and saury, and to synthesize population responses to basin-scale changes over large regions of the North Pacific.

Suggested Citation

  • Batchelder, Harold P. & Kashiwai, Makoto, 2007. "Ecosystem modeling with NEMURO within the PICES Climate Change and Carrying Capacity program," Ecological Modelling, Elsevier, vol. 202(1), pages 7-11.
  • Handle: RePEc:eee:ecomod:v:202:y:2007:i:1:p:7-11
    DOI: 10.1016/j.ecolmodel.2006.05.037
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    References listed on IDEAS

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    1. Megrey, Bernard A. & Rose, Kenneth A. & Klumb, Robert A. & Hay, Douglas E. & Werner, Francisco E. & Eslinger, David L. & Smith, S. Lan, 2007. "A bioenergetics-based population dynamics model of Pacific herring (Clupea harengus pallasi) coupled to a lower trophic level nutrient–phytoplankton–zooplankton model: Description, calibration, and se," Ecological Modelling, Elsevier, vol. 202(1), pages 144-164.
    2. Mukai, Daiki & Kishi, Michio J. & Ito, Shin-ichi & Kurita, Yutaka, 2007. "The importance of spawning season on the growth of Pacific saury: A model-based study using NEMURO.FISH," Ecological Modelling, Elsevier, vol. 202(1), pages 165-173.
    3. Kishi, Michio J. & Kashiwai, Makoto & Ware, Daniel M. & Megrey, Bernard A. & Eslinger, David L. & Werner, Francisco E. & Noguchi-Aita, Maki & Azumaya, Tomonori & Fujii, Masahiko & Hashimoto, Shinji & , 2007. "NEMURO—a lower trophic level model for the North Pacific marine ecosystem," Ecological Modelling, Elsevier, vol. 202(1), pages 12-25.
    4. Rose, Kenneth A. & Werner, Francisco E. & Megrey, Bernard A. & Aita, Maki Noguchi & Yamanaka, Yasuhiro & Hay, Douglas E. & Schweigert, Jake F. & Foster, Matthew Birch, 2007. "Simulated herring growth responses in the Northeastern Pacific to historic temperature and zooplankton conditions generated by the 3-dimensional NEMURO nutrient–phytoplankton–zooplankton model," Ecological Modelling, Elsevier, vol. 202(1), pages 184-195.
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    1. Kishi, Michio J. & Kashiwai, Makoto & Ware, Daniel M. & Megrey, Bernard A. & Eslinger, David L. & Werner, Francisco E. & Noguchi-Aita, Maki & Azumaya, Tomonori & Fujii, Masahiko & Hashimoto, Shinji & , 2007. "NEMURO—a lower trophic level model for the North Pacific marine ecosystem," Ecological Modelling, Elsevier, vol. 202(1), pages 12-25.
    2. Werner, Francisco E. & Ito, Shin-Ichi & Megrey, Bernard A. & Kishi, Michio J., 2007. "Synthesis of the NEMURO model studies and future directions of marine ecosystem modeling," Ecological Modelling, Elsevier, vol. 202(1), pages 211-223.

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