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blond/presentation/test1-presentation.mdk

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[INCLUDE=presentation]
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Title : Simulation of premixed flames with FDS. Application to the hot smoke testing system Izar
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[INCLUDE=presentation] Title : Simulation of premixed flames with FDS.
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Application to the hot smoke testing system Izar
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Author : Juan José Blond Hernández
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Author : Blond Hernández, Juan José
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Affiliation : Basler & Hofmann AG
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Reveal Theme : sky
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Beamer Theme : singapore
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Author : Rios, Oriol
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Affiliation : Department of Chemical Engineering, Centre for Technological Risk Studies. Universitat Politècnica de Catalunya Barcelona, Spain
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[TITLE]
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# Content
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# Introduction
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Don't worry, this section is not long...
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[Don't worry, this section is not long...]{ :red }
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~ Align-Left
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* This work is based on the hot smoke testing system, Izar
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* It was developed by the swiss company Basler & Hofmann AG
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* A premixed combustion is the source of energy for the test
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(Oh yes, that's why I am here attending this presentation)
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[(Oh yes, that's why I am here attending this presentation)]{ :lime}
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* The results presented in this work are part of its development process
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- The entire work was presented as master thesis within the IMFSE program in 2013
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~
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# Before we begin, what is Izar?
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I am very happy with your question...
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[I am very happy with your question...]{ :red }
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~ Align-Left
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~ Center
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![130815-6612]
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[130815-6612]: images/130815-6612.jpg "130815-6612" { width:auto; max-width:90% }
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~
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~ Begin Columns
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~ Column { width:50% }
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* Izar is hot smoke testing system
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![130815-6609]
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[130815-6609]: images/130815-6609.jpg "130815-6609" { width:auto; max-width:90% }
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~
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~ Column { width:50% }
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* It is composed by:
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- A gas burner
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- A gas supplier
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- Some fog generators
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![151117-9498]
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* Its maximal power is 1.200 kW
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- The energy is mainly released as convection heat
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- Regarding the standard ratio 1/3 radiation 2/3 convection, the system can reproduce diffusion fires of 1.800 kW
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- More modules can work in parallel to achieve higher powers
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[151117-9498]: images/151117-9498.jpg "151117-9498" { width:auto; max-width:50% }
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~
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~ End Columns
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# Nice! It sounds interesting, but what makes Izar something special?
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- It is possible to follow fire curves like the t^2^-curve
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* A validated FDS model is available
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(Oh, a validated FDS for a testing system? It seems interesting, I will keep attending what this guy is saying...)
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[(Oh, a validated FDS for a testing system? It seems interesting, I will keep attending what this guy is saying...) ]{ :lime }
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~
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# How is that you decided to combine FDS with Izar?
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It is not the best idea to do a smoke test an burn the room... I needed to figure out how to avoid it.
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(Yes, that is definitely a good reason)
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[It is not the best idea to do a smoke test an burn the room... I needed to figure out how to avoid it.]{ :red }
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{.fragment} [Yes, that is definitely a good reason]{ :lime }
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{.fragment}
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~ Align-Left
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* The aim is to calculate the plume temperatures originated by Izar
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~
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# And how did you create teh FDS model for Izar
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# And how did you create the FDS model for Izar
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* The radiation fraction can be calculated considering the partial pressures
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* The radiation loses of the system are around 3 %
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Juanjo, in maths, we trust, but a picture may help to believe what your are saying...
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[Juanjo, in maths, we trust, but a picture may help to believe what your are saying...]{ :lime }
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~
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# Validation of the FDS model
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~ Align-Left
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* You are probably thinking
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- Nice method
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- The theory is interesting, but I want to if it works
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- Does he have more cool pictures?
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* [You are probably thinking]{ :red }
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- {.fragment}Nice method
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- {.fragment}The theory is interesting, but I want to known if it works
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- {.fragment}Does he have more cool pictures?
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{.fragment}
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* Well, let's show the results
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- And yes, there are some more pictures
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~

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