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January 1974
This article was originally published in
Journal of Engineering for Power
ISSN 0022-0825
In this Issue
Research Papers
NOx Emissions From Industrial Boilers: Potential Control Methods
J. Eng. Power. January 1974, 96(1): 1–6.
doi: https://doi.org/10.1115/1.3445744
Topics:
Emissions
,
Heating boilers
,
Nitrogen oxides
,
Boilers
,
Combustion
,
Flue gases
,
Fuels
,
Heat
,
Regulations
Development of Jet Pumps for Boiling Water Reactor Recirculation Systems
J. Eng. Power. January 1974, 96(1): 7–12.
doi: https://doi.org/10.1115/1.3445755
Topics:
Boiling water reactors
,
Jet pumps
,
Geometry
,
Reactor vessels
,
Subcooling
,
Water
On the Unsteady Supersonic Cascade With a Subsonic Leading Edge—An Exact First Order Theory—Part 1
J. Eng. Power. January 1974, 96(1): 13–22.
doi: https://doi.org/10.1115/1.3445743
Topics:
Cascades (Fluid dynamics)
,
Flow (Dynamics)
,
Airfoils
,
Integral equations
,
Aerodynamics
,
Blades
,
Fluid-dynamic forces
,
Suction
,
Unsteady flow
On the Unsteady Supersonic Cascade With a Subsonic Leading Edge—An Exact First Order Theory—Part 2
J. Eng. Power. January 1974, 96(1): 23–31.
doi: https://doi.org/10.1115/1.3445745
Topics:
Cascades (Fluid dynamics)
,
Airfoils
,
Pressure
,
Trains
,
Blades
,
Stability
,
Aerodynamics
,
Flow (Dynamics)
,
Fluid-dynamic forces
,
Oscillations
Low Emissions Combustion for the Regenerative Gas Turbine: Part 1—Theoretical and Design Considerations
J. Eng. Power. January 1974, 96(1): 32–48.
doi: https://doi.org/10.1115/1.3445746
Topics:
Combustion
,
Design
,
Emissions
,
Gas turbines
,
Temperature
,
Flames
,
Nitrogen oxides
,
Automobiles
,
Automotive industry
,
Combustion chambers
Low Emissions Combustion for the Regenerative Gas Turbine: Part 2—Experimental Techniques, Results, and Assessment
J. Eng. Power. January 1974, 96(1): 49–55.
doi: https://doi.org/10.1115/1.3445747
Topics:
Combustion
,
Emissions
,
Gas turbines
,
Combustion chambers
,
Engines
,
Geometry
,
Hardware
,
Instrumentation
,
Light trucks
,
Nitrogen oxides
Fluid Pressure Drop Testing on Once-Through Boilers
J. Eng. Power. January 1974, 96(1): 56–58.
doi: https://doi.org/10.1115/1.3445748
Topics:
Boilers
,
Fluid pressure
,
Testing
,
Failure
,
Instrumentation
,
Pressure
,
Pressure drop
Viscous Effects on Slip Factor of Centrifugal Blowers
J. Eng. Power. January 1974, 96(1): 59–65.
doi: https://doi.org/10.1115/1.3445749
Topics:
Angular momentum
,
Blades
,
Boundary layers
,
Design
,
Flow (Dynamics)
,
Impellers
,
Pumps
,
Shapes
,
Shear (Mechanics)
Thermal-Hydraulic Performance of a 2 MWt Sodium-Heated, Forced Recirculation Steam Generator Model
J. Eng. Power. January 1974, 96(1): 66–76.
doi: https://doi.org/10.1115/1.3445752
Topics:
Boilers
,
Sodium
,
Heat transfer
,
Liquid metal fast breeder reactors
,
Boiling
,
Steam
,
Superheaters
,
Temperature distribution
,
Breeder reactors
,
Flow (Dynamics)
Errata
Erratum: “Some Effects of Variable Surface Temperature on Heat Transfer to a Partially Porous Flat Plate” (Journal of Engineering for Power, 1973, 95, pp. 319–325)
J. Eng. Power. January 1974, 96(1): 65.
doi: https://doi.org/10.1115/1.3445750
Topics:
Flat plates
,
Heat transfer
,
Temperature
Erratum: “Calculation of Compressible Subsonic Flow in Cascades With Varying Blade Height” (Journal of Engineering for Power, 1973, 95, pp. 345–351)
J. Eng. Power. January 1974, 96(1): 65.
doi: https://doi.org/10.1115/1.3445751
Topics:
Blades
,
Subsonic flow
Discussions
Discussion: “Review of Compressible Flow Theories for Airfoil Cascades” (Gostelow, J. P., 1973, ASME J. Eng. Power, 95, pp. 281–292)
J. Eng. Power. January 1974, 96(1): 77–78.
doi: https://doi.org/10.1115/1.3445753
Topics:
Airfoils
,
Compressible flow
Closure to “Discussion of ‘Review of Compressible Flow Theories for Airfoil Cascades’” (1974, ASME J. Eng. Power, 96, pp. 77–78)
J. Eng. Power. January 1974, 96(1): 79.
doi: https://doi.org/10.1115/1.3445754
Topics:
Airfoils
,
Compressible flow
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