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October 1968
This article was originally published in
Journal of Engineering for Power
ISSN 0022-0825
In this Issue
Research Papers
Axial Cascade Technology and Application to Flow Path Designs. Part I—Axial Cascade Technology
J. Eng. Power. October 1968, 90(4): 309–328.
doi: https://doi.org/10.1115/1.3609206
Axial Cascade Technology and Application to Flow Path Designs. Part II—Application of Data to Flow Path Designs
J. Eng. Power. October 1968, 90(4): 329–340.
doi: https://doi.org/10.1115/1.3609207
Topics:
Cascades (Fluid dynamics)
,
Flow (Dynamics)
,
Machinery
,
Cavitation
,
Compressibility
,
Design
Axial Turbine Performance Evaluation. Part A—Loss-Geometry Relationships
J. Eng. Power. October 1968, 90(4): 341–348.
doi: https://doi.org/10.1115/1.3609211
Topics:
Geometry
,
Performance evaluation
,
Turbines
,
Blades
,
Clearances (Engineering)
,
Optimization
,
Reynolds number
Axial Turbine Performance Evaluation. Part B—Optimization With and Without Constraints
J. Eng. Power. October 1968, 90(4): 349–359.
doi: https://doi.org/10.1115/1.3609212
Topics:
Optimization
,
Performance evaluation
,
Turbines
,
Clearances (Engineering)
,
Reynolds number
,
Blades
,
Geometry
,
Leakage
,
Machinery
,
Rotors
Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use
J. Eng. Power. October 1968, 90(4): 361–365.
doi: https://doi.org/10.1115/1.3609215
Topics:
Gas turbines
,
Navy
,
Testing
Aeroelastic Instability in Labyrinth Seals
J. Eng. Power. October 1968, 90(4): 369–374.
doi: https://doi.org/10.1115/1.3609221
Topics:
Elasticity
,
Excitation
,
Failure
,
Fatigue failure
,
High pressure (Physics)
,
Machinery
,
Pressure
,
Resonance
,
Rotation
,
Rotors
Developing a High-Powered Diesel Engine for Railway Traction
J. Eng. Power. October 1968, 90(4): 375–383.
doi: https://doi.org/10.1115/1.3609222
Topics:
Diesel engines
,
Railroads
,
Traction
,
Engines
,
Locomotives
,
Combustion
,
Construction
,
Cycles
,
Design
,
Pressure
Film Cooling With Injection Through Holes: Adiabatic Wall Temperatures Downstream of a Circular Hole
J. Eng. Power. October 1968, 90(4): 384–393.
doi: https://doi.org/10.1115/1.3609223
Topics:
Film cooling
,
Wall temperature
,
Boundary layer turbulence
,
Flat plates
,
Flow (Dynamics)
,
Fluids
Discussions
Closure to “Discussions of ‘Axial Cascade Technology and Application to Flow Path Designs. Parts I and II’” (1968, ASME J. Eng. Power, 90, p. 340)
J. Eng. Power. October 1968, 90(4): 340.
doi: https://doi.org/10.1115/1.3609210
Topics:
Cascades (Fluid dynamics)
,
Flow (Dynamics)
Discussion: “Axial Turbine Performance Evaluation. Parts A and B” (Balje´, O. E., and Binsley, R. L., 1968, ASME J. Eng. Power, 90, pp. 341–348 and pp. 349–359)
J. Eng. Power. October 1968, 90(4): 359–360.
doi: https://doi.org/10.1115/1.3609213
Topics:
Performance evaluation
,
Turbines
Closure to “Discussion of ‘Axial Turbine Performance Evaluation. Parts A and B’” (1968, ASME J. Eng. Power, 90, pp. 359–360)
J. Eng. Power. October 1968, 90(4): 360.
doi: https://doi.org/10.1115/1.3609214
Topics:
Performance evaluation
,
Turbines
Discussion: “Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use” (Carleton, R. S., 1968, ASME J. Eng. Power, 90, pp. 361–365)
J. Eng. Power. October 1968, 90(4): 365.
doi: https://doi.org/10.1115/1.3609216
Topics:
Gas turbines
,
Navy
Discussion: “Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use” (Carleton, R. S., 1968, ASME J. Eng. Power, 90, pp. 361–365)
J. Eng. Power. October 1968, 90(4): 365–366.
doi: https://doi.org/10.1115/1.3609217
Topics:
Gas turbines
,
Navy
Discussion: “Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use” (Carleton, R. S., 1968, ASME J. Eng. Power, 90, pp. 361–365)
J. Eng. Power. October 1968, 90(4): 366–367.
doi: https://doi.org/10.1115/1.3609218
Topics:
Gas turbines
,
Navy
Discussion: “Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use” (Carleton, R. S., 1968, ASME J. Eng. Power, 90, pp. 361–365)
J. Eng. Power. October 1968, 90(4): 367.
doi: https://doi.org/10.1115/1.3609219
Topics:
Gas turbines
,
Navy
Closure to “Discussions of ‘Qualification of Gas Turbine Engines for U. S. Navy Shipboard Use’” (1968, ASME J. Eng. Power, 90, pp. 365–367)
J. Eng. Power. October 1968, 90(4): 367–368.
doi: https://doi.org/10.1115/1.3609220
Topics:
Gas turbines
,
Navy
Discussion: “Film Cooling With Injection Through Holes: Adiabatic Wall Temperatures Downstream of a Circular Hole” (Goldstein, R. J., Eckert, E. R. G., and Ramsey, J. W., 1968, ASME J. Eng. Power, 90, pp. 384–393)
J. Eng. Power. October 1968, 90(4): 393.
doi: https://doi.org/10.1115/1.3609224
Topics:
Film cooling
,
Wall temperature
Discussion: “Film Cooling With Injection Through Holes: Adiabatic Wall Temperatures Downstream of a Circular Hole” (Goldstein, R. J., Eckert, E. R. G., and Ramsey, J. W., 1968, ASME J. Eng. Power, 90, pp. 384–393)
J. Eng. Power. October 1968, 90(4): 393–394.
doi: https://doi.org/10.1115/1.3609225
Topics:
Film cooling
,
Wall temperature
Discussion: “Film Cooling With Injection Through Holes: Adiabatic Wall Temperatures Downstream of a Circular Hole” (Goldstein, R. J., Eckert, E. R. G., and Ramsey, J. W., 1968, ASME J. Eng. Power, 90, pp. 384–393)
J. Eng. Power. October 1968, 90(4): 394–395.
doi: https://doi.org/10.1115/1.3609226
Topics:
Film cooling
,
Wall temperature
Closure to “Discussions of ‘Film Cooling With Injection Through Holes: Adiabatic Wall Temperatures Downstream of a Circular Hole’” (1968, ASME J. Eng. Power, 90, pp. 393–395)
J. Eng. Power. October 1968, 90(4): 395.
doi: https://doi.org/10.1115/1.3609227
Topics:
Film cooling
,
Wall temperature
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