首页> 外文期刊>Progress in Oceanography >Bridging the gap from ocean models to population dynamics of large marine predators: A model of mid-trophic functional groups
【24h】

Bridging the gap from ocean models to population dynamics of large marine predators: A model of mid-trophic functional groups

机译:缩小海洋模型与大型海洋捕食者种群动态之间的距离:中营养功能群模型

获取原文
获取原文并翻译 | 示例
           

摘要

The modeling of mid-trophic organisms of the pelagic ecosystem is a critical step in linking the coupled physical-biogeochemical models to population dynamics of large pelagic predators. Here, we provide an example of a modeling approach with definitions of several pelagic mid-trophic functional groups. This application includes six different groups characterized by their vertical behavior, i.e., occurrence of diel migration between epipelagic, mesopelagic and bathypelagic layers. Parameterization of the dynamics of these components is based on a temperature-linked time development relationship. Estimated parameters of this relationship are close to those predicted by a model based on a theoretical description of the allocation of metabolic energy at the cellular level, and that predicts a species metabolic rate in terms of its body mass and temperature. Then, a simple energy transfer from primary production is used, justified by the existence of constant slopes in log-log biomass size spectrum relationships. Recruitment, ageing, mortality and passive transport with horizontal currents, taking into account vertical behavior of organisms, are modeled by a system of advection-diffusion-reaction equations. Temperature and currents averaged in each vertical layer are provided independently by an Ocean General Circulation Model and used to drive the mid-trophic level (MTL) model. Simulation outputs are presented for the tropical Pacific Ocean to illustrate how different temperature and oceanic circulation conditions result in spatial and temporal lags between regions of high primary production and regions of aggregation of mid-trophic biomass. Predicted biomasses are compared against available data. Data requirements to evaluate outputs of these types of models are discussed, as well as the prospects that they offer both for ecosystem models of lower and upper trophic levels.
机译:中上层生态系统中营养生物的建模是将耦合的物理生物地球化学模型与大型中上层捕食者种群动态联系起来的关键步骤。在这里,我们提供了一个建模方法的示例,其中定义了几个中上营养功能组。该申请包括六个不同的组,这些组的特征在于它们的垂直行为,即上表层,中弹性层和深浮层之间的狄尔迁移。这些组件的动力学参数化基于与温度相关的时间发展关系。这种关系的估计参数与基于模型在细胞水平上对代谢能分配的理论描述所基于的模型所预测的参数接近,并且该参数根据物种的体重和温度来预测物种的代谢速率。然后,使用了一次生产中的简单能量转移,这通过对数-对数生物量大小光谱关系中存在恒定斜率来证明。考虑到生物体的垂直行为,通过对流扩散反应方程式对招聘,老龄化,死亡率和水平电流被动运输进行建模。海洋垂直环流模型独立提供每个垂直层中的平均温度和电流,并用于驱动中营养层(MTL)模型。给出了热带太平洋的模拟输出,以说明不同的温度和海洋环流条件如何导致高初级生产力地区和中营养生物质聚集地区之间的时空滞后。将预测的生物量与可用数据进行比较。讨论了评估这些类型的模型的输出所需的数据,以及它们为低营养级别和高营养级别的生态系统模型提供的前景。

著录项

  • 来源
    《Progress in Oceanography》 |2010年第2期|69-84|共16页
  • 作者单位

    MEMMS (Marine Ecosystems Modeling and Monitoring by Satellites), CLS, Space Oceanography Division, 8-10 rue Hermes, 31520 Ramonville, France;

    ESSIC, Earth Science System Interdisciplinary Center, University of Maryland, USA;

    rnMEMMS (Marine Ecosystems Modeling and Monitoring by Satellites), CLS, Space Oceanography Division, 8-10 rue Hermes, 31520 Ramonville, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号