Kanal Fanının İtme Kuvvetinin Deneysel Olarak Hesaplanması
Yıl 2016,
Cilt: 14 Sayı: 1, 1 - 7, 02.05.2018
Mehmet Hanifi Doğru
,
İbrahim Halil Güzelbey
Öz
Bu çalışmada kanal fanının farklı hızlarda ürettiği itme kuvveti iki farklı
deneysel çalışma ile belirlenmiştir. İlk metotta kanal fanı durağan basınç
noktaları için delik açılmış bir boru içine yerleştirilmiştir. Durağan basınç
bu sistemle ölçülmüştür ve kanal fanının itme kuvveti bu ölçümden yararlanarak
elde edilmiştir. İkinci metotta kanal fanının itme kuvvetini elde edebilmek için
bir yay sistemi kurulmuştur. Bu iki ölçüm sisteminin sonuçları birbiriyle
kıyaslanmış ve sonuçlar tablolarda gösterilmiştir.
Kaynakça
- 1. Michael R. Mendelhall & Selden B. Spangler,
‘Theoretical study of ducted fan performance’,
National aeronautics and space administration
contractor report, NASA CR-1494, January
1970.
- 2. J. A. Lieser, D. Lohmann, C. H. Rohardt,
Aeroacoustic, “Design of a 6-Bladed Propeller”,
Aerospace Science and Technology, 1997, nº 6,
381-389.
- 3. E. Ritschl, R. Theiner, D. Hanus, “Inlet Channel
for a Ducted Fan Propulsion System of a Light
Aircraft”, Acta Polytechnica Vol. 43 No.
6/2003.
- 4. Thong Q. Dang & Peter R. Bushnell,
“Aerodynamics of cross-flow fans and their
application to aircraft propulsion and flow
control”, Progress in Aerospace Sciences 45
(2009) 1–29.
- 5. Quentin R. Wald, “the aerodynamics of
propellers”, Progress in Aerospace Sciences 42
(2006) 85–128.
- 6. M. K. Rwigema, ‘propeller blade element
momentum theory with vortex wake deflection’,
In ICAS, 27th international congress of the
aeronautical sciences, France, 2010, ICAS
2010-2.3.4
- 7. Jean-Jacques Chattot, “Effects of blade tip
modifications on wind turbine performance
using vortex model”, Computers & Fluids 38
(2009) 1405–1410.
- 8. Sven Schmitz, J. J. Chattot, Mahendra Bhagwat,
Marvin Moulton, Francis Caradonna, “the
Prediction and Validation of Hover Performance
and Detailed Blade Loads”, AHS
Aeromechanics Specialist's Conference, San
Francisco, CA, Jan. 2008.
- 9. H. Jing, L. Ru, H. Yaling, Q. Zhiguo, “Solutions
for variable density low Mach number flows
with compressible pressure-based algorithm”,
Applied Thermal Engineering 27 (2007) 2104–
2112.
- 10. Almgren, A.S., Bell, J.B., Rendleman, C.A.,
Zingale, M., “Low mach number modeling of
type Ia supernovae. 1.Hydrodynamics”, The
Astrophysical Journal, 2006, 637:922–936.
Yıl 2016,
Cilt: 14 Sayı: 1, 1 - 7, 02.05.2018
Mehmet Hanifi Doğru
,
İbrahim Halil Güzelbey
Kaynakça
- 1. Michael R. Mendelhall & Selden B. Spangler,
‘Theoretical study of ducted fan performance’,
National aeronautics and space administration
contractor report, NASA CR-1494, January
1970.
- 2. J. A. Lieser, D. Lohmann, C. H. Rohardt,
Aeroacoustic, “Design of a 6-Bladed Propeller”,
Aerospace Science and Technology, 1997, nº 6,
381-389.
- 3. E. Ritschl, R. Theiner, D. Hanus, “Inlet Channel
for a Ducted Fan Propulsion System of a Light
Aircraft”, Acta Polytechnica Vol. 43 No.
6/2003.
- 4. Thong Q. Dang & Peter R. Bushnell,
“Aerodynamics of cross-flow fans and their
application to aircraft propulsion and flow
control”, Progress in Aerospace Sciences 45
(2009) 1–29.
- 5. Quentin R. Wald, “the aerodynamics of
propellers”, Progress in Aerospace Sciences 42
(2006) 85–128.
- 6. M. K. Rwigema, ‘propeller blade element
momentum theory with vortex wake deflection’,
In ICAS, 27th international congress of the
aeronautical sciences, France, 2010, ICAS
2010-2.3.4
- 7. Jean-Jacques Chattot, “Effects of blade tip
modifications on wind turbine performance
using vortex model”, Computers & Fluids 38
(2009) 1405–1410.
- 8. Sven Schmitz, J. J. Chattot, Mahendra Bhagwat,
Marvin Moulton, Francis Caradonna, “the
Prediction and Validation of Hover Performance
and Detailed Blade Loads”, AHS
Aeromechanics Specialist's Conference, San
Francisco, CA, Jan. 2008.
- 9. H. Jing, L. Ru, H. Yaling, Q. Zhiguo, “Solutions
for variable density low Mach number flows
with compressible pressure-based algorithm”,
Applied Thermal Engineering 27 (2007) 2104–
2112.
- 10. Almgren, A.S., Bell, J.B., Rendleman, C.A.,
Zingale, M., “Low mach number modeling of
type Ia supernovae. 1.Hydrodynamics”, The
Astrophysical Journal, 2006, 637:922–936.