Study on Propulsion Performance by Varying Rake Distribution at the Propeller Tip
Abstract
:1. Introduction
2. Study Methods of Tip Rake Propellers
2.1. Design Based on Potential Analysis
2.2. Tip Rake Propeller Model Test
2.3. Numerical Analysis of Propeller Open Water Performance by Computational Fluid Dynamics (CFD)
3. Conclusions and Discussion
Author Contributions
Funding
Conflicts of Interest
References
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r/R | P/D | Rake (xG/D) | Skew(°) | C/D | f0/C | T0/D | |
---|---|---|---|---|---|---|---|
Forward | Backward | ||||||
0.18 | 0.8347 | 0.0000 | 0.0000 | −4.72 | 0.2313 | 0.0284 | 0.0459 |
0.25 | 0.8912 | 0.0000 | 0.0000 | −6.98 | 0.2618 | 0.0296 | 0.0407 |
0.30 | 0.9269 | 0.0004 | 0.0000 | −7.82 | 0.2809 | 0.0295 | 0.0371 |
0.40 | 0.9783 | 0.0031 | −0.0017 | −7.74 | 0.3138 | 0.0268 | 0.0305 |
0.50 | 1.0079 | 0.0101 | −0.0082 | −5.56 | 0.3403 | 0.0220 | 0.0246 |
0.60 | 1.0130 | 0.0174 | −0.0206 | −1.50 | 0.3573 | 0.0173 | 0.0195 |
0.70 | 0.9967 | 0.0200 | −0.0285 | 4.11 | 0.3590 | 0.0140 | 0.0149 |
0.80 | 0.9566 | 0.0180 | −0.0285 | 10.48 | 0.3376 | 0.0120 | 0.0107 |
0.90 | 0.9006 | 0.0119 | −0.0189 | 17.17 | 0.2797 | 0.0104 | 0.0069 |
0.95 | 0.8683 | 0.0070 | −0.0113 | 20.63 | 0.2225 | 0.0101 | 0.0053 |
1.00 | 0.8331 | 0.0000 | 0.0000 | 24.18 | 0.0001 | 8.7000 | 0.0037 |
the Type of Propellers | PP016 (KP505) | PP033 (Forward) | PP034 (Backward) |
---|---|---|---|
J | 0.659 | 0.662 | 0.661 |
η0 | 0.614 | 0.626 | 0.627 |
Diff.(%) | - | 1.934 | 2.207 |
the Type of Propellers | PP016 (KP505) | PP033 (Forward) | PP034 (Backward) |
---|---|---|---|
J | 0.646 | 0.651 | 0.651 |
η0 | 0.607 | 0.608 | 0.614 |
Diff.(%) | - | 0.264 | 1.280 |
J | KT | 10KQ | ETAO |
0.1 | 0.479 | 0.672 | 0.113 |
0.3 | 0.386 | 0.558 | 0.330 |
0.5 | 0.279 | 0.431 | 0.516 |
0.7 | 0.173 | 0.303 | 0.637 |
0.9 | 0.066 | 0.160 | 0.596 |
(a) Reference propeller (KP505) | |||
J | KT | 10KQ | ETAO |
0.1 | 0.472 | 0.668 | 0.112 |
0.3 | 0.384 | 0.561 | 0.327 |
0.5 | 0.281 | 0.436 | 0.512 |
0.7 | 0.175 | 0.308 | 0.635 |
0.9 | 0.068 | 0.164 | 0.597 |
(b) Forward propeller | |||
J | KT | 10KQ | ETAO |
0.1 | 0.480 | 0.672 | 0.114 |
0.3 | 0.385 | 0.557 | 0.330 |
0.5 | 0.278 | 0.429 | 0.515 |
0.7 | 0.172 | 0.302 | 0.633 |
0.9 | 0.065 | 0.158 | 0.586 |
(c) Backward propeller |
Program | Star CCM+ (Ver. 9.04) |
---|---|
Governing equation | Reynolds Averaged Navier Stokes (RANS) equation |
Discretization | Cell centered FVM |
Turbulence model | Realizable κ-ε model |
Velocity-pressure coupling | SIMPLE algorithm |
Rotation method | Sliding interface moving mesh |
Cell number | 1,600,000 |
The Type of Propellers | PP016 (KP505) | PP033 (Forward) | PP034 (Backward) |
---|---|---|---|
J | 0.669 | 0.670 | 0.668 |
η0 | 0.618 | 0.617 | 0.614 |
Diff.(%) | - | −0.2 | −0.6 |
Potential Analysis | Model Test | CFD Analysis | |
---|---|---|---|
Forward | +1.9% | +0.3% | −0.2% |
Backward | +2.2% | +1.3% | −0.6% |
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Kang, J.G.; Kim, M.C.; Kim, H.U.; Shin, I.R. Study on Propulsion Performance by Varying Rake Distribution at the Propeller Tip. J. Mar. Sci. Eng. 2019, 7, 386. https://doi.org/10.3390/jmse7110386
Kang JG, Kim MC, Kim HU, Shin IR. Study on Propulsion Performance by Varying Rake Distribution at the Propeller Tip. Journal of Marine Science and Engineering. 2019; 7(11):386. https://doi.org/10.3390/jmse7110386
Chicago/Turabian StyleKang, Jin Gu, Moon Chan Kim, Hyeon Ung Kim, and I. Rok Shin. 2019. "Study on Propulsion Performance by Varying Rake Distribution at the Propeller Tip" Journal of Marine Science and Engineering 7, no. 11: 386. https://doi.org/10.3390/jmse7110386
APA StyleKang, J. G., Kim, M. C., Kim, H. U., & Shin, I. R. (2019). Study on Propulsion Performance by Varying Rake Distribution at the Propeller Tip. Journal of Marine Science and Engineering, 7(11), 386. https://doi.org/10.3390/jmse7110386