Produktbild: Ibrahim, M: Stirling Convertor Regenerators

Ibrahim, M: Stirling Convertor Regenerators

Fr. 349.00

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

12.01.2012

Abbildungen

schwarz-weiss Illustrationen, Tabellen, schwarz-weiss

Verlag

Taylor and Francis

Seitenzahl

488

Maße (L/B/H)

23.5/15.6/2.8 cm

Gewicht

830 g

Sprache

Englisch

ISBN

978-1-4398-3006-2

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

12.01.2012

Abbildungen

schwarz-weiss Illustrationen, Tabellen, schwarz-weiss

Verlag

Taylor and Francis

Seitenzahl

488

Maße (L/B/H)

23.5/15.6/2.8 cm

Gewicht

830 g

Sprache

Englisch

ISBN

978-1-4398-3006-2

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  • Produktbild: Ibrahim, M: Stirling Convertor Regenerators
  • Introduction Unsteady Flow and Heat Transfer Theory Governing Equations Nonequilibrium Porous-Media Conservation Equations Summary Correlations for Steady/Unsteady Fluid Flow and Heat Transfer Introduction Internal Fluid Flow and Heat Transfer External Fluid Flow and Heat Transfer Fluid Flow and Heat Transfer in Regenerators Summary Fundamentals of Operation and Types of Stirling Devices, with Descriptions of Some Sample Devices (Including Power and Cooling Levels) Introduction Fundamentals of Operation of Stirling Engines, Coolers, and Heat Pumps General Structural Configurations of Stirling Engines Methods of Getting Power Out of Stirling Engines Power Outputs of Some Stirling Engines That Have Been Fabricated and Tested Stirling Coolers Types of Stirling Engine Regenerators Introduction Regenerator Envelope (Canister or Volume) Configurations Regenerator Porous Material Structures Random-Fiber Regenerators-Actual Scale Introduction NASA/Sunpower Oscillating-Flow Test Rig and Test-Rig Modifications Random-Fiber Test Results Theoretical Investigations Computational Fluid Dynamics (CFD) Simulation for Cylinders in Cross-Flow Concluding Remarks and Summary of Experimental Correlations Random-Fiber Regenerator-Large Scale Introduction Major Aspects and Accomplishments of the Large-Scale Regenerator Test Program Segmented-Involute-Foil Regenerator-Actual Scale Introduction Selecting a Microfabricated Regenerator Design Manufacturing Processes Considered and Manufacturing Vendor Selection Analysis, Assembly, and Oscillating-Flow Rig Testing of the Segmented-Involute-Foil Regenerator CFD Results for the Segmented-Involute-Foil Regenerator Structural Analysis of Involute Foil Regenerator Stirling Engine Involute-Foil Regenerator Results Overall Involute-Foil Conclusions and Recommendations for Future Work Segmented-Involute-Foil Regenerator-Large-Scale (Experiments, Analysis, and Computational Fluid Dynamics) Introduction Dynamic Similitude Large-Scale Mock-Up Design The LSMU Experiments under Unidirectional Flow The Jet Penetration Study Unsteady Heat-Transfer Measurements Mesh Sheets and Other Regenerator Matrices Introduction Mesh-Sheet Regenerators Matt Mitchell's Etched-Foil Regenerators Sandia National Laboratory Flat-Plate Regenerator Applications Other Than Stirling Engines Introduction Use of Porous Material in Combustion Processes Use of Porous Materials to Enhance Electronic Cooling Use of Porous Materials in Heat Pipes Summary and Conclusions Future Work Developing New Stirling Engine/Coolers Developing a New Regenerator Design Further Investigations in the Regenerator Computational Fluid Dynamics (CFD) Modeling of the Regenerator Microfabrication of New Regenerators Appendices Nomenclature