82 results on '"Kazuhiro Hamaguchi"'
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2. Basic Characteristics of a High-Porosity Regenerator Matrix Using Sintered Metal Fiber
3. Stirling Engines, Their Future as Electric Power Generators from Waste Heat
4. Regenerative Heat Exchanger and Its Design Approach
5. A18 Evaluation of co-generation system for greenhouse with the CO_2 fertilization using a Stirling engine
6. A15 Heat transfer characteristics and pressure drop of regenerator matrix using sintered metal fiber(2^<nd> Report)
7. A09 Research of Phase Shifter for Model Pulse Tube Refrigerator
8. A09 Heat transfer characteristics and pressure drop of regenerator matrix using sintered metal fiber
9. Effect of Regenerator Entrance Shape on Performance of Compact Pulse Tube Cryocooler
10. Measurements of Work Flux Density in a Pulse Tube Engine
11. Flywheel-based Thermoacoustic Engine
12. C01 Effects of Pulse Tube Shape on Pulse Tube Engine Performance
13. C10 Energy conversion and energy loss for loop type thermoacoustic refrigerator
14. C02 Effect of Regenerator Entrance Shape on Performance of Pulse Tube Cryocooler
15. The Development Status and the Application Cases of Stirling Engines
16. Development of Numerical Wave Tank Coupled with Structure Analysis Based on FEM
17. Measurement of Work Generation and Improvement in Performance of a Pulse Tube Engine
18. A08 Basic Performance of Stirling Engine Co-Generation System Using Wood Pellets
19. A09 The Development of Wood Pellet Gasification Burner for Stirling Engine
20. OS11-3 Effects of heat storage material on pulse tube engine performance
21. Effects of Entrance and Exit Shapes on a Uniform Flow in Regenerators
22. A01 The Possibility of Electric Generation by Stirling Engine Using Wood Pellet Stoves
23. C08 Basic characteristics of pulse tube engine (2^<nd> Report)
24. 206 Education of Machine Design Using 3-D CAD/CAE
25. Effects of entrance and exit shapes on uniform flow in regenerator : 2^<nd> report
26. Effects of Stacking Method on Pressure Loss and Heat Transfer Characteristics in Stacked Wire Gauze
27. Effects of entrance and exit shapes on uniform flow in regenerator
28. Influence on the output of Stirling engine by heating furnace shape
29. Effect of expander shape on cooling characteristics of model pulse tube refrigerator (2nd Report)
30. Current Status and Frontier Research of Stirling Engines
31. Effect of the Geometrical Entrance Shape on the Velocity Distribution in Regenerator Matrix
32. S03 The Possibility of Residential Co-Generation System Using a Stirling Engine
33. C02 Effect of Boundary Flow Passage on Pressure Loss in Regenerator
34. C01 Effects of Stacking Method on Heat Transfer Characteristic in Stacked Wire Gauze (2nd Report)
35. Study of Heat Transfer Characteristics of Regenerator Matrix : 2nd Report
36. Effects of Stacking Method on Heat Transfer Characteristic in Stacked Wire Gauze
37. Effect of Entrance and Exit Areas on the Pressure Drop and Velocity Distribution in Regenerator Matrix
38. Improvement of Semifree Piston Stirling Engine Regenerator Performance by Combined Mesh Matrices
39. Study on Fluid Resistance for Various Porous Metal Matrices
40. Effects of porosity and wire diameter on pressure drop and heat transfer characteristics of sintered metal fiber
41. Evaluation of cogeneration system using 1kW class Stirling engine
42. Digital acceleration controller based on recursive least squares (RLS) identification for an excretion care support robot
43. T05 Specific surface area of regenerator matrix
44. Effects of Wire Diameter on Stirling Engine Regenerator Performance
45. Applicability study of regenerator matrix using sintered metal fiber for Stirling Engine - Analysis using Schmidt model
46. Effect of phase control on a single-piston Stirling engine performance
47. Effects of regenerator geometry on the Stirling engine performance. 2nd Report, Regenerator diameter
48. C08 Research and Development of New Phase Shifter for Pulse Tube Refrigerator
49. Performance Characteristics of an Atmospheric Pulse Tube Refrigerator
50. Effects of Flow Passage Equipped Matrix Housing Ends on a Uniform Flow in Regenerator
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