View: |
Part 1: Document Description
|
Citation |
|
---|---|
Title: |
Functional Model Library of the Environmental Control Systems (FLECS) |
Identification Number: |
doi:10.7910/DVN/US3KUY |
Distributor: |
Harvard Dataverse |
Date of Distribution: |
2024-11-24 |
Version: |
1 |
Bibliographic Citation: |
Müller, Christian; Scholz, Dieter, 2024, "Functional Model Library of the Environmental Control Systems (FLECS)", https://doi.org/10.7910/DVN/US3KUY, Harvard Dataverse, V1 |
Citation |
|
Title: |
Functional Model Library of the Environmental Control Systems (FLECS) |
Alternative Title: |
Links to all related documents: |
Identification Number: |
doi:10.7910/DVN/US3KUY |
Authoring Entity: |
Müller, Christian (Hamburg University of Applied Science) |
Scholz, Dieter (Hamburg University of Applied Science) |
|
Date of Production: |
2008-03-07 |
Software used in Production: |
MATLAB/Simulink |
Distributor: |
Harvard Dataverse |
Access Authority: |
Scholz, Dieter |
Depositor: |
Scholz, Dieter |
Date of Deposit: |
2024-11-24 |
Series Name: |
Digital Library - Projects and Theses - Prof. Dr. Scholz |
Holdings Information: |
https://doi.org/10.7910/DVN/US3KUY |
Study Scope |
|
Keywords: |
Engineering, Luftfahrt, Aeronautics |
Topic Classification: |
Aerospace |
Abstract: |
The task of the FLECS project is the development of a database for the Environmental Control System (ECS). Each component of the ECS is related to one model block. In general the description of the ECS is correlated to the description of an air/gas distribution network. The model blocks correspond to a physical model. The inner structure of the models is built up as universal as possible considering thermodynamic and fluid mechanic basics. Generalized volume elements consider water vapor, CO2 content and free water, condensation and evaporation processes, incompressible and compressible flow conditions. Further elements: Nodes, heat transfer elements, steady state and dynamical heat exchangers, specialized flow resistances like compressors and turbines, vapor compression cycle systems. |
Kind of Data: |
Program |
Notes: |
Available data: 1.) MATLAB/Simulink Model Library, two files: detailed_components.mdl and basic_components.mdl. 2.) FLECS Library Documentation in MATLAB/Simulink format. One PDF for each component. |
Methodology and Processing |
|
Sources Statement |
|
Data Access |
|
Other Study Description Materials |
|
Related Publications |
|
Citation |
|
Title: |
MÜLLER, Christian, SCHOLZ, Dieter, 2008. Functional Model Library of the Environmental Control Systems (FLECS) – Physical Description. Report. Hamburg University of Applied Sciences, Aircraft Design and Systems Group (AERO). Available from: |
Bibliographic Citation: |
MÜLLER, Christian, SCHOLZ, Dieter, 2008. Functional Model Library of the Environmental Control Systems (FLECS) – Physical Description. Report. Hamburg University of Applied Sciences, Aircraft Design and Systems Group (AERO). Available from: |
Label: |
basic_components.mdl |
Text: |
MATLAB/Simulink Model Library, Basic Components. |
Notes: |
application/octet-stream |
Label: |
Compressor_.pdf |
Notes: |
application/pdf |
Label: |
detailed_components.mdl |
Text: |
MATLAB/Simulink Model Library, Detailed Components. |
Notes: |
application/octet-stream |
Label: |
Duct_.pdf |
Notes: |
application/pdf |
Label: |
Duct_Heat_Transfer_Wall_.pdf |
Notes: |
application/pdf |
Label: |
Dynamic_HX_.pdf |
Notes: |
application/pdf |
Label: |
FR_.pdf |
Notes: |
application/pdf |
Label: |
Generalized_Fan_.pdf |
Notes: |
application/pdf |
Label: |
Hot_Bar_.pdf |
Notes: |
application/pdf |
Label: |
HR_Cond_.pdf |
Notes: |
application/pdf |
Label: |
HR_Conv_.pdf |
Notes: |
application/pdf |
Label: |
HR_Conv_Thermal_Capacity_.pdf |
Notes: |
application/pdf |
Label: |
HR_Rad_.pdf |
Notes: |
application/pdf |
Label: |
Mixing_Point_3D_.pdf |
Notes: |
application/pdf |
Label: |
Mixing_Unit_1D_.pdf |
Notes: |
application/pdf |
Label: |
Mixing_Unit_2D_.pdf |
Notes: |
application/pdf |
Label: |
Mixing_Unit_3D_.pdf |
Notes: |
application/pdf |
Label: |
Mixing_Unit_4D_.pdf |
Notes: |
application/pdf |
Label: |
Node_2D_.pdf |
Notes: |
application/pdf |
Label: |
Node_3D_.pdf |
Notes: |
application/pdf |
Label: |
Node_4D_.pdf |
Notes: |
application/pdf |
Label: |
Specialized_Fan_.pdf |
Notes: |
application/pdf |
Label: |
Static_HX_.pdf |
Notes: |
application/pdf |
Label: |
Tee_.pdf |
Notes: |
application/pdf |
Label: |
Thermal_Capacity_.pdf |
Notes: |
application/pdf |
Label: |
Turbine_.pdf |
Notes: |
application/pdf |
Label: |
Valve_.pdf |
Notes: |
application/pdf |
Label: |
Valve_Comp_.pdf |
Notes: |
application/pdf |
Label: |
Vol_1D_.pdf |
Notes: |
application/pdf |
Label: |
Vol_2D_.pdf |
Notes: |
application/pdf |
Label: |
Vol_3D_.pdf |
Notes: |
application/pdf |
Label: |
Vol_4D_.pdf |
Notes: |
application/pdf |
Label: |
Vol_Isobaric_2D_.pdf |
Notes: |
application/pdf |