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Faculté des Sciences appliquées
Faculté des Sciences appliquées
MASTER THESIS
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Travail de fin d'études et stage[BR]- Travail de fin d'études : Dynamic molten salt test loop: Development of a simulation tool for heat balance assessment and data post-processing[BR]- Stage d'insertion professionnelle : John Cockerill

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Piron, Sasha ULiège
Promotor(s) : Duchene, Laurent ULiège
Date of defense : 27-Jan-2023 • Permalink : http://hdl.handle.net/2268.2/16753
Details
Title : Travail de fin d'études et stage[BR]- Travail de fin d'études : Dynamic molten salt test loop: Development of a simulation tool for heat balance assessment and data post-processing[BR]- Stage d'insertion professionnelle : John Cockerill
Translated title : [fr] Boucle de test au sel fondu: développement d'un outil de simulation pour le bilan thermique et le post-processing des données
Author : Piron, Sasha ULiège
Date of defense  : 27-Jan-2023
Advisor(s) : Duchene, Laurent ULiège
Committee's member(s) : Dewallef, Pierre ULiège
Rouzes, Maxime 
Language : English
Number of pages : 101
Keywords : [en] molten salt
[en] corrosion test loop
[en] simulation
Discipline(s) : Engineering, computing & technology > Energy
Research unit : John Cockerill
Name of the research project : Solar GNext
Target public : Researchers
Professionals of domain
Student
Institution(s) : Université de Liège, Liège, Belgique
Degree: Master en ingénieur civil électromécanicien, à finalité spécialisée en énergétique
Faculty: Master thesis of the Faculté des Sciences appliquées

Abstract

[en] This master thesis aims to improve a numerical tool that simulates the heat transfers taking place on the Dynacor molten salt test loop built by John Cockerill. The purpose of this loop is to reproduce the conditions met in the receiver of a concentrated solar power plant using molten salt in order to analyze the corrosive effect of the salt in these conditions. We also wanted to establish test plans to experimentally assess parameters of the test section that cannot directly be measured and to analyze the data retrieved from the first circulations performed on the loop.
The thesis therefore contains an introduction developing the context in which the Dynacor loop was built and a state of the art on molten salt loops. The Dynacor loop is then presented in greater detail so the reader can understand the computations implemented in the heat balance assessment tool. This latter is described in a chapter including a description of the initial tool which was coded in Visual Basic for Applications followed by the development of the improved tool coded in Python. After that, a chapter is dedicated to the description of test plans to evaluate the coating resistivity and the heat transfer coefficient at the test section. A procedure to determine the uncertainty associated to these computed parameters is also given. The data from a first circulation on the test loop are then analyzed and compared to the python tool results in order to calibrate this latter before concluding the master thesis.
The developed Python tool behaves as expected qualitatively and could be further calibrated by performing more circulations on the Dynacor loop. A user friendly interface could also be added to this tool. Concerning the assessment of the parameters at the test section, no conclusion can be given for now since no test has already been performed.


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Document(s)

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Access PironSasha_MasterThesis_Jan2023.pdf
Description:
Size: 3.31 MB
Format: Adobe PDF

Annexe(s)

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Access data (22).csv
Description: Dataset used for the post processing
Size: 421.7 kB
Format: Unknown
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Access DataAnalysisCirc6.ipynb
Description: Notebook containing the codes implemented for the post processing
Size: 1.27 MB
Format: Unknown
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Access CalculsCompl.py
Description: defined in the README file
Size: 1.47 kB
Format: Unknown
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Access ContainerCooling.py
Description: Defined in the README file
Size: 2.48 kB
Format: Unknown
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Access GlobalFunctions.py
Description: Defined in the README file
Size: 16.62 kB
Format: Unknown
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Access LoopCurve.xlsx
Description: Defined in the README file
Size: 6.61 kB
Format: Microsoft Excel XML
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Access LoopParameters.py
Description: Defined in the README file
Size: 13.2 kB
Format: Unknown
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Access Main.py
Description: Defined in the README file
Size: 7.64 kB
Format: Unknown
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Access PermanentPressureDropCoefficient.py
Description: Compute the permanent pressure drop through the wedge flowmeter
Size: 1.97 kB
Format: Unknown
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Access PressureLossSalt.py
Description: Defined in the README file
Size: 2.85 kB
Format: Unknown
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Access PumpVerif.py
Description: Computation of the pump operation point
Size: 2.69 kB
Format: Unknown
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Access README.md
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Size: 4.7 kB
Format: Unknown
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Access SaltCoolerHeatTransfer.py
Description: Defined in the README file
Size: 3.72 kB
Format: Unknown
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Access SystemHeatloss.py
Description: Defined in the README file
Size: 8.06 kB
Format: Unknown
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Access TestSectionHeat.py
Description: Defined in the README file
Size: 9.87 kB
Format: Unknown
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Access ThermocouplesTemperatures.py
Description: Defined in the README file
Size: 2.47 kB
Format: Unknown
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Access VenturiCalculations.py
Description: Implementation of the functions relative to the wedge flowmeter
Size: 5.51 kB
Format: Unknown
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Access MasterThesisAbstract.pdf
Description: Abstract
Size: 130.14 kB
Format: Adobe PDF

Author

  • Piron, Sasha ULiège Université de Liège > Master ing. civil électro., à fin.

Promotor(s)

Committee's member(s)

  • Dewallef, Pierre ULiège Université de Liège - ULiège > Département d'aérospatiale et mécanique > Systèmes de conversion d'énergie pour un dévelop.durable
    ORBi View his publications on ORBi
  • Rouzes, Maxime
  • Total number of views 24
  • Total number of downloads 11










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