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Land Carbon Cycle Modeling Matrix Approach Data Assimilation Ecological Forecasting Yiqi Luo

  • SKU: BELL-50474950
Land Carbon Cycle Modeling Matrix Approach Data Assimilation Ecological Forecasting Yiqi Luo
$ 31.00 $ 45.00 (-31%)

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Land Carbon Cycle Modeling Matrix Approach Data Assimilation Ecological Forecasting Yiqi Luo instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 97.51 MB
Pages: 398
Author: Yiqi Luo, Benjamin Smith
ISBN: 9781498737012, 1498737013
Language: English
Year: 2022

Product desciption

Land Carbon Cycle Modeling Matrix Approach Data Assimilation Ecological Forecasting Yiqi Luo by Yiqi Luo, Benjamin Smith 9781498737012, 1498737013 instant download after payment.

Carbon moves through the atmosphere, through the oceans, onto land, and into ecosystems. This cycling has a large effect on climate – changing geographic patterns of rainfall and the frequency of extreme weather – and is altered as the use of fossil fuels adds carbon to the cycle. The dynamics of this global carbon cycling are largely predicted over broad spatial scales and long periods of time by Earth system models. This book addresses the crucial question of how to assess, evaluate, and estimate the potential impact of the additional carbon to the land carbon cycle. The contributors describe a set of new approaches to land carbon cycle modeling for better exploring ecological questions regarding changes in carbon cycling; employing data assimilation techniques for model improvement; and doing real- or near-time ecological forecasting for decision support. This book strives to balance theoretical considerations, technical details, and applications of ecosystem modeling for research, assessment, and crucial decision making.

Key Features

  • Helps readers understand, implement, and criticize land carbon cycle models
  • Offers a new theoretical framework to understand transient dynamics of land carbon cycle
  • Describes a suite of modeling skills – matrix approach to represent land carbon, nitrogen, and phosphorus cycles; data assimilation and machine learning to improve parameterization; and workflow systems to facilitate ecological forecasting
  • Introduces a new set of techniques, such as semi-analytic spin-up (SASU), unified diagnostic system with a 1-3-5 scheme, traceability analysis, and benchmark analysis, for model evaluation and improvement

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