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Changeset 15015 for NEMO/branches/2021/ticket2680_C1D_PAPA/doc/latex/TOP/main/introduction.tex – NEMO

Ignore:
Timestamp:
2021-06-17T19:17:25+02:00 (3 years ago)
Author:
gsamson
Message:

merge trunk into branch (#2680)

Location:
NEMO/branches/2021/ticket2680_C1D_PAPA
Files:
2 edited

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  • NEMO/branches/2021/ticket2680_C1D_PAPA

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        99 
        1010# SETTE 
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         12 
  • NEMO/branches/2021/ticket2680_C1D_PAPA/doc/latex/TOP/main/introduction.tex

    r11591 r15015  
    1111\begin{itemize} 
    1212        \item a transport code TRP sharing the same advection/diffusion routines with the dynamics, with specific treatment of some features like the surface boundary 
    13 conditions, or the positivity of passive tracers concentrations 
     13conditions or the positivity of passive tracers concentrations 
    1414        \item sources and sinks - SMS - models that can be typically biogeochemical, biological or radioactive 
    15         \item an offline option which is a simplified OPA 9 model using fields of physics variables that are previously stored to disk 
     15        \item an offline option which is a simplified OPA 9 model using fields of physical variables that were previously stored on disk 
    1616\end{itemize} 
    1717 
    18 There is two ways of coupling TOP to the dynamics : 
     18There are two ways of coupling TOP to the dynamics : 
    1919 
    2020\begin{itemize} 
    2121        \item \textit{online coupling} : the evolution of passive tracers is computed along with the dynamics 
    22         \item \textit{offline coupling} : the fields of physics variables are read from files and interpolated at each model time step, with no constraints on the time sampling in the input files 
     22        \item \textit{offline coupling} : the physical variable fields are read from files and interpolated at each model time step, with no constraints on the temporal sampling in the input files 
    2323\end{itemize} 
    2424 
    25 TOP is designed to handle multiple oceanic tracers through a modular approach and it includes different sub-modules : 
     25TOP is designed to handle multiple oceanic tracers through a modular approach and includes different sub-modules : 
    2626 
    2727\begin{itemize} 
    2828        \item the ocean water age module (AGE) tracks down the time-dependent spread of surface waters into the ocean interior 
    29         \item inorganic carbon (e.g. CFCs, SF6) and radiocarbon (C14) passive tracers can be modeled to assess ocean absorption timescales of anthropogenic emissions and further address water masses ventilation 
     29        \item inorganic (\eg, CFCs, SF6) and radiocarbon (C14) passive tracers can be modeled to assess ocean absorption timescales of anthropogenic emissions and further address water masses ventilation 
    3030        \item a built-in biogeochemical model (PISCES) to simulate lower trophic levels ecosystem dynamics in the global ocean 
    31         \item a prototype tracer module (MY\_TRC) to enable user-defined cases or the coupling with alternative biogeochemical models ( e.g. BFM, MEDUSA, ERSEM, BFM, ECO3M) 
     31        \item a prototype tracer module (MY\_TRC) to enable user-defined cases or the coupling with alternative biogeochemical models (\eg, BFM, MEDUSA, ERSEM, BFM, ECO3M) 
    3232\end{itemize} 
    3333 
     
    3636\vspace{0cm} 
    3737\includegraphics[width=0.80\textwidth]{Fig_TOP_design} 
    38 %\includegraphics[height=6cm,angle=-00]{Fig_TOP_design} 
    39 \caption{A schematic view of NEMO-TOP component} 
     38\caption{Schematic view of the NEMO-TOP component} 
    4039\label{topdesign} 
    4140\end{center} 
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