JOURNAL ARTICLE

El potencial realista de las energías renovables

César Dopazo GarcíaN. Pueyo

Year: 2009 Journal:   Energía: Ingeniería energética y medioambiental Vol: 35 (217)Pages: 44-49

Abstract

Most nutrient uptake problems are modeled by the convection-diffusion equation (CDE) abiding by Fick's law. Because nutrients needed by plants exist in the soil solution as a form of ions and the soil is a typical fractal structure of heterogeneity, it makes the solute transport appear anomalous diffusion in soil. Taking anomalous diffusion as a transport process, we propose time and space fractional nutrient uptake models based on the classic Nye-Tinker-Barber model. There does not appear apparent sub-diffusion of nitrate in the time fractional model until four months and the time fractional models are appropriate for describing long-term dynamics and slow sorption reaction; the space fractional model can capture super-diffusion in short term and it is suitable for describing nonlocal phenomena and daily variations driven by transpiration and metabolism; the anomalous diffusion more apparently appears near the root surface in the modeling simulation.

Keywords:
Environmental science Humanities Philosophy

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Topics

Global Energy and Sustainability Research
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Water-Energy-Food Nexus Studies
Physical Sciences →  Environmental Science →  Water Science and Technology
Social Acceptance of Renewable Energy
Social Sciences →  Social Sciences →  Sociology and Political Science

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