And for the time dependent part: I would suggest to store the solution and 
time for each time step in some sort of container. You could create a 
`FEFieldFunction` representation for these solutions, and then use linear 
interpolation between two time steps. Depending on how fine your resolution 
is, this may require lots of memory.

Marc
On Friday, June 4, 2021 at 2:56:52 PM UTC-6 Marc Fehling wrote:

> Hello Naren!
>
> you can use the `FEFieldFunction` 
> <https://www.dealii.org/current/doxygen/deal.II/classFunctions_1_1FEFieldFunction.html>
>  
> class for this purpose. It will interpret your finite element solution as a 
> continuous function via interpolation. You can use it as a representation 
> of your fine solution.
>
> This class needs a `DoFHandler` object, your finite element solution, and 
> the mapping collection. If you want to store your reference solution on 
> your file system, you would need to make use of the serialization 
> capabilities of the `Triangulation` 
> <https://www.dealii.org/current/doxygen/deal.II/classTriangulation.html#a2f0c10f7a8cd32d961e9367173685047>
>  
> and `Vector` 
> <https://www.dealii.org/current/doxygen/deal.II/classVector.html#a9c9b9333d11630bf0fc82a7957e0d1c1>
>  
> classes, and then reconstruct the dependencies for the `FEFieldFunction` 
> representation. For parallel distributed application, you would need to 
> make use of a `SolutionTransfer` 
> <https://www.dealii.org/current/doxygen/deal.II/classparallel_1_1distributed_1_1SolutionTransfer.html#ad36ed9c068828e1beb0d1a87d7c76ecd>
>  
> object.
>
> I hope this helps!
> Marc
> On Friday, June 4, 2021 at 10:51:49 AM UTC-6 [email protected] wrote:
>
>> Hello, 
>>
>> How do I compute the L2 (in space and time) convergence rates when the 
>> exact solution is unknown? I plan on computing a solution using a fine grid 
>> and time step and then using that as my exact solution. How could I "save" 
>> this solution to use it when computing the L2 error in space and time? If 
>> it were only space, then I understand that I could use solution transfer, 
>> but I'm unsure how to deal with the temporal variable. 
>>
>> Thank you!
>>
>> Naren Vohra
>>
>

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