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Journal Articles
Journal:
Journal of Turbomachinery
Article Type: Research Papers
Publisher: ASME
J. Turbomach. November 2023, 145(11): 111007.
Paper No: TURBO-23-1013
Published Online: October 4, 2023
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 1 Schematic of the test rig More about this image found in Schematic of the test rig
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 2 Schematic diagram of the laidback fan-shaped hole More about this image found in Schematic diagram of the laidback fan-shaped hole
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 3 Schematic diagram of the coolant channels More about this image found in Schematic diagram of the coolant channels
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 4 Distribution of the measurement points More about this image found in Distribution of the measurement points
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 5 Comparison of the experimental results with the previous literature More about this image found in Comparison of the experimental results with the previous literature
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 6 Discharge coefficient C d versus the pressure ratio P tc / P m over different coolant crossflow orientations More about this image found in Discharge coefficient C d versus the pressure ratio P tc / P m over ...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 7 Discharge coefficient C d versus the pressure ratio P tc / P m with different coolant crossflow inlet Reynolds numbers More about this image found in Discharge coefficient C d versus the pressure ratio P tc / P m with ...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 8 Discharge coefficient C d versus the pressure ratio P tc / P m for different cylindrical section lengths More about this image found in Discharge coefficient C d versus the pressure ratio P tc / P m for d...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 9 Discharge coefficient C d versus the pressure ratio P tc / P m for different expansion section lengths More about this image found in Discharge coefficient C d versus the pressure ratio P tc / P m for d...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 10 Normalized discharge coefficient C d / C d (no,cross) versus the pressure ratio P tc / P m : ( a ) parallel inline crossflow conditions with varying cylindrical section lengths, ( b ) parallel counter crossflow conditions with varying cylindrical section lengths, ( c ) perpendicula... More about this image found in Normalized discharge coefficient C d / C d (no,cross) versus the press...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 11 Normalized discharge coefficient C d / C d (no,cross) versus the pressure P tc / P m for different coolant crossflow inlet Reynolds numbers: ( a ) parallel inline crossflow conditions with varying cylindrical section lengths, ( b ) parallel counter crossflow conditions with varyin... More about this image found in Normalized discharge coefficient C d / C d (no,cross) versus the press...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 12 Distribution of the discharge coefficient C d under different geometries and pressure ratios More about this image found in Distribution of the discharge coefficient C d under different geometries...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 13 Comparisons between the fitting curves and experimental data More about this image found in Comparisons between the fitting curves and experimental data
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 14 Comparisons between the predicted values and data from the literature More about this image found in Comparisons between the predicted values and data from the literature
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 15 Normalized discharge coefficient versus the jet-to-crossflow momentum flux ratio More about this image found in Normalized discharge coefficient versus the jet-to-crossflow momentum flux ...
Image
in Sensitivity of Laidback Fan-Shaped Hole Discharge Coefficient Under Internal Coolant Crossflow Conditions
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 16 Comparison of experimental data with the proposed model More about this image found in Comparison of experimental data with the proposed model
Journal Articles
Journal:
Journal of Turbomachinery
Article Type: Research Papers
Publisher: ASME
J. Turbomach. November 2023, 145(11): 111011.
Paper No: TURBO-23-1039
Published Online: October 4, 2023
Image
in Fluid–Thermal–Structural Analysis of Partial Admission Axial Impulse Turbines With Liquid Jet Impingement Cooling
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 1 Turbine used in underwater vehicles: ( a ) power system for underwater vehicle and ( b ) turbine More about this image found in Turbine used in underwater vehicles: ( a ) power system for underwater vehi...
Image
in Fluid–Thermal–Structural Analysis of Partial Admission Axial Impulse Turbines With Liquid Jet Impingement Cooling
> Journal of Turbomachinery
Published Online: October 4, 2023
Fig. 2 Schematic of the turbine using jet impingement liquid cooling: (1) circular-type nozzle, (2) turbine blades, (3) cooling position at axial direction, and (4) cooling position at radial direction More about this image found in Schematic of the turbine using jet impingement liquid cooling: (1) circular...
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