A.V.SATYANARAYANA 0603PH0914 Revisied...

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157 REFERENCES Books/Journals / Proceedings 1. G.D.Rai, “Non-Conventional Energy Sources”, Khanna Publishers, Delhi, IV edition, 2006 2. S.Rao and Dr. B.B.Parulekar, “Energy Technology”, Khanna Publishers, III Edition, 2002 3. A.M. de Paor, “Aerodynamic Design of Optimum Wind Turbines”, Applied Energy. Vol. 12, 1982, pp. 221 – 228 4. S.Hu and J.Cheng, “An Innovative Design of Ducted Wind Turbine” In proceedings of world renewable energy congress IX, 2006 5. Bernard Frankovi and Ivan Vrsalovi, “New High Profitable Wind Turbines”, Renewable Energy, Volume 24, Issues 3-4, November 2001, pp. 491-499 6. Grant AD and Dannecker RKW, “Investigations of a Building- Integrated Wind Turbine Module” Wind Energy, 2002, pp. 5.53-5.71 7. D.G.Philips, R.G.Flay and T.A.Nash, “ Aerodynamic Analysis and Monitoring of the Vortec-7 Diffuser Augmented Wind Turbine”, 1999, Vortec Energy Limited, University of Auckland 8. A.Betz, “Introduction to the Theory of Flow Machines”, Pergamon Press. London, 1938 9. M.Sanuki, “Studies on biplane Wind Planes Ventilation tubes and cup anemometers”, Papers in Meteorology and Geophysics (Japan), Vol.1(2-a), 1950, pp. 279-290

Transcript of A.V.SATYANARAYANA 0603PH0914 Revisied...

157

REFERENCES

Books/Journals / Proceedings

1. G.D.Rai, “Non-Conventional Energy Sources”, Khanna

Publishers, Delhi, IV edition, 2006

2. S.Rao and Dr. B.B.Parulekar, “Energy Technology”, Khanna

Publishers, III Edition, 2002

3. A.M. de Paor, “Aerodynamic Design of Optimum Wind

Turbines”, Applied Energy. Vol. 12, 1982, pp. 221 – 228

4. S.Hu and J.Cheng, “An Innovative Design of Ducted Wind Turbine”

In proceedings of world renewable energy congress IX, 2006

5. Bernard Frankovi and Ivan Vrsalovi, “New High Profitable Wind

Turbines”, Renewable Energy, Volume 24, Issues 3-4, November

2001, pp. 491-499

6. Grant AD and Dannecker RKW, “Investigations of a Building-

Integrated Wind Turbine Module” Wind Energy, 2002, pp.

5.53-5.71

7. D.G.Philips, R.G.Flay and T.A.Nash, “ Aerodynamic Analysis

and Monitoring of the Vortec-7 Diffuser Augmented Wind

Turbine”, 1999, Vortec Energy Limited, University of Auckland

8. A.Betz, “Introduction to the Theory of Flow Machines”,

Pergamon Press. London, 1938

9. M.Sanuki, “Studies on biplane Wind Planes Ventilation tubes

and cup anemometers”, Papers in Meteorology and Geophysics

(Japan), Vol.1(2-a), 1950, pp. 279-290

158

10. M.Iwasaki, “The Experimental and Theoretical Investigation of

Wind Mills”, Rep. Res. lnst. App. Mech. (Japan), Vol. 2(8),1953

11. G.M.Lilley and W.J.Rainbird, “A Preliminary Report on the

Design and Performance of a Ducted Wind Mill”, College of

Aeronautics, Report 102, 1956

12. A.Kogan and E.Nissim, “Shrouded Aerogenerator Design Study,

Two-Dimensional Shrouded Performance, Bulletin of the

Research Council of Israel, 1962, pp. 67-88

13. C.A.I.Fletcher, “Computer Analysis of Diffuser Augmented Wind

Turbines”. Energy Con. & Mgmt, Vol.2, 1981, pp. 175 -183

14. Riegler, “Principles of Energy Extraction from a Free Stream

by Means of Wind Turbines”, Wind Energy, Vol. 7(2), 1983,

pp. 115-126

15. A.K.Wright and D.H.Wood, “The Starting and Low Wind Speed

Behavior of a Small Horizontal Axis Wind Turbine”, Journal of

Wind Energy Ind Aerodyn, 2004, 1265–1279

16. Ssu-Yuan Hua and Jung-Ho Chengb, “Innovatory Designs for

Ducted Wind Turbines”, Elsevier science direct, Renewable

Energy, Vol. 33, 2008, pp. 1491–1498

17. A.D.Grant and R.K.W.Dannecker, “Investigations of a

Building- Integrated Wind Turbine Module”, Wind Energy,

2002, pp. 5.53-5.71

18. C.J.Lawn, “Optimization of The Power Output from Ducted

Turbines”, Journal of Power Energy, 2003, pp. 107–117

159

19. A.Varol, Y.Varol, “Increasing the Efficiency of Wind Turbines”,

Journal of Wind Energy Ind Aerodyn, 2001, pp. 809 - 815

20. T.Burton and D.Sharpe, N.Jenkins and E.Bossanyi “ Wind

Energy Hand Book”, 2001, pp. 59-65

21. H.Grassmann, F.Bet, G.Cabras, M.Ceschia, D.Cobai and C.

DelPapa, “A Partially Static Turbine-First Experimental

Results”, Renewable Energy, 2003, 1779–1785

22. A.L.Weisbrich, “Feature Review of Some Advanced and

Innovative Design in Wind Energy Conversion Systems”,

Alternative Energy Sources(Indirect Solar Energy), 1977, Vol 4,

Pp. 1663-1679

23. Bernard Frankovi and Ivan Vrsalovi, “New High Profitable Wind

Turbines”, Renewable Energy, Volume 24, Issues 3-4, November

2001, pp. 491-499

24. J.P.Molly,“Windenergie Theorie Und Praxis”, Germany,

Karlsruhe, 1978

25. G.L. Jhonson “Wind Energy Systems”, Englewood cliffs,

Prentice –hall, 1985

26. R.H.Taylor, ”Alternative Energy Sources for the Centralized

Generation of Electricity”, Modern energy studies,

Bristol(UK), 1983

27. K.H.Bergey, “The Lanchaster-Betz Limit”, Energy, Vol. 3, NO. 6,

1979, pp. 382-384

160

28. R.T. Griffiths, “The Effect of Aerofoil Characteristics on

Windmill Performance”, The Aeronautical Journal, Vol.81

July, 1977, pp. 322-326

29. N.V.Paul, “Commercial Applications of Wind Power”, Van

Nostrand Reinhold Company, Berkshire, England, 1983

30. Shikha, T.S.Bhatti and D.P.Kothari, “Large Engineering

Systems”, Conference of Power Engineering, 2003, pp. 177-181

31. Shikha, T.S.Bhatti and D.P.Kothari, “Air Concentrating

Nozzles: A Promising Option For Wind Turbines”, International

Journal of Energy Technology and Policy, Vol.3, Issue. 4, 2005,

pp. 394-412

32. K.J.Touryan, J.H. Strickland and D.E. Berg, “Electric Power

from Vertical - Axis Wind Turbines”, Journal of Propulsion and

Power, Vol. 3, No. 6, November / December 1987, pp. 481-493

33. R. B.MacPherson, “Design, Development and Testing of Low-

Head High-Efficiency Kinetic Energy Machines -An Alternative

for the Future”, M.Sc. thesis. University of Massachusetts,

Amherst, USA, 1972

34. B.G.Newman, “Actuator-Disc Theory for Vertical Axis Wind

Turbines“. Wind Engineering and Industrial Aerodynamics” Vol.

15, 1983, pp. 347-355

35. V.J.Modi, N.J. Roth and M.S.U.K. Fernando, “Optimal

Configuration Studies and Prototype Design of a Wind- Energy

Operated Irrigation System“. Wind Engineering and industrial

Aerodynamics” Vol. 16, 1984, pp. 85-96

161

36. D.J.Sharpe, “Refinements and Developments of the Multiple

Stream Tube Theory for the Aerodynamic Performance of

Vertical Axis Wind Turbines”, Proc. Sixth BWEA Wind Energy

Conference, Reading, 1984, pp. 148-159

37. A.Sabzevan, “Performance Characteristics of Concentrator

Augmented Savonius Wind Rotors”, Wind Engineering, Vol. I,

1977, pp. 198-206

38. K.M.Obeidat, “Theoretical Study of Flow around Savonius

Rotors”, MS Thesis, Mechanical Engineering Department,

Yarmouk University. lrbid, Jordan, 1987

39. Opawa, “Theoretical Study on the Flow About Savonius Rotor”,

Journal of Fluids Engineering, Vol. 106. 1984, pp. 85-91

40. N.Fujisawa and S.Shibuya, “Observations of dynamic stall on D

arrieus wind turbine blades,” Journal of Wind Engineering and

Industrial Aerodynamics, vol. 89, no. 2, 2001, pp. 201-214

41. T.Van Holten, “Concentrator Systems for Wind Energy With

Emphasis on Tip Vanes”, Wind Energy, 1981, 5(1): pp. 2245

42. E.Dick, “Power Limits for Wind Energy Concentrator Systems”,

Wind Engineering Vol. 10, no. 2, 1986, pp. 98-115

43. A.Kogan and E.Nissim, “Shrouded Aerogenerator Design Study,

Two-Dimensional Shrouded Performance, Bulletin of the

Research Council of Israel, 1962, pp. 67-88

44. A.Kogan and A.Seginer, “Shrouded Aero generator Design Study

II, Axis Symmetric Shroud Performance”, Dept. of Aeronautical

Engineering, Technion, 1963

162

45. Micheal Moeller Jr and Kenneth Visser, “ Analysis of Diffuser

Augmented Wind Turbines”, Clarkson University’s 10 th

Annual- Summer Symposium on Under Graduate Research

Experiences, 2008

46. B.L.Gilbert, R.A Oman and K.M Foreman “ Fluid Dynamics of

DAWT’s”, Journal Energy, Vol.2, 1978, pp. 368-374

47. Flay, R.G.J. Philips and D.G. Richards, “ Developments of

Diffuser Augmented Wind Turbines in New Zealand”, Proc,

EWEC Conference, Nice, France, 1999

48. R.A.Oman, B.L.Gilbert and K.M.Foreman,“ Fluid Dynamics of

Diffuser Augmented Wind Turbines”, Journal of energy,

1978, pp. 368-374

49. O.Igra, “Research and Development for Shrouded Wind

Turbines”, European Wind Energy Conference EWEC84,

Hamburg, 1984, pp. 236-245

50. M.O.Hansen, N.N.Sorenson and G.J.Flay, “Effect Of Placing A

Diffuser Around A Wind Turbine”, Wind Energy, 2000, pp. 207-213.

51. M.J.Wele and Jr.Presz, “Ducted Wind / Water Turbines and

Propellers Revisited”, Journal of Propulsion and Power, 2008,

pp. 1146-1150

52. G.J.W.Van bussel, “The Science of Making More Torque from

Wind: Diffuser Theory and Revisited”, Journal of Physics,

Conference Series 75, 2007

163

53. K.Abe and Y.Ohya “An Investigations of Flow Fields Around

Flanged Diffusers Using CFD”, Journal of Wind Energy and

Industrial aerodynamics, Vol 92, pp. 315-330

54. S.Metins, “Wind Energy in the Built Environment, Concentrator

Effects of Buildings”, PhD thesis Delft university of Technology,

2006, Section of Wind Energy, Delft, The Netherlands

55. Dr J.W.Gerard Van Bussel “The Science of Making More Torque

from Wind : Diffuser Experiments and Theory Revisited”,

Faculty of aerospace Engineering, Dwelft University of

Technology, The Netherlands

56. O.De.Vries, “Fluid Dynamic Aspects of Wind Energy

Conversion”, Vol. 243, AGARD. AG.243, 1979

57. P.M.Sforza, “Vortex Augmentation of Wind Energy”, Wind

Energy 1977, Vol.7(3), pp. 186-197

58. F.L.Loth, “Betz Type Limitations of Vortex Wind Machines”,

Wind Energy, Vol 7(3), 1977, pp. 169-185

59. D.A.Olivieri, “A 3-D Vortex Dipole Model for Wind Turbines”,

Wind Energy, Vol. 20(5), 1996, pp. 287-306

60. T.Van Holten, “Wind Mills With Diffuser Effect Induced By Small

Tip Vanes”, International Symposeum, Wind Energy Systems,

Edition 3, 1976, pp. 31-46

61. G.I.W.Van Bussel, “Windmills With Increased Power Output

due to Tip Vanes”, Alternative Energy Sources(Indirect Solar

Energy), Vol. 4, 1977, pp. 1647-1661

62. I.H.Abott and Vonoenhoff, “Theory of wind Sections”, AET, 1958

164

63. A. Hassanien, E.I.Banna, H.Abdel and M.Rehman “Effectiveness

of Aerodynamic Characteristics on Wind Turbine Design

Performance”, Seventh international conference on Energy and

Environment, Vol1, Cairo, Egypt, 2000, pp. 525-537

64. D.A.Spera, Wind Turbine Technology, New York: ASME Press, 1935

65. K.Y.Maalawi and M.T.S. A Badawy “Direct Method for Evaluating

Performance of Horizontal Axis Wind Turbines”, Renewable and

sustainable Energy Review, Vol. 5, 2001, pp. 175-190

66. H.Glauert, “Aerodynamic theory”, Division L. Airplane

propellers, chapter XI. Berlin Durand WF editor, Vol. IV, 1935,

pp. 324-330

67. B.M.Nagai, K.Ameku and J.N.Roy, “Performance of a 3 KW Wind

Turbine Generator With Variable Pitch Control System”, Applied

Energy, Vol. 86, No. 9, 2009, pp. 1774–1782

68. X.Liu, C.Yan and Y.Zhiquan, “Optimization Model for Rotor

Blades of Horizontal Axis Wind Turbine”, Front. Mech. Eng.

China. Vol. 2, No. 4, 2007, pp. 483-488

69. S.M.Habali, “Designing and Testing of Small Mixed Airfoil Wind

Turbine Blades”, Journal of Renewable Energy, Vol. 61, 1995,

pp. 195

70. R.Lanzafame and M.Messina, “Fluid Dynamics Wind Turbine

Design: Critical Analysis, Optimization and Application of

BEM Theory”, Journal of Renewable Energy. Vol. 32, 2007,

pp. 2291-2305

165

71. H.Snel, “Review of the Present Status of Rotor Aerodynamics”,

Wind Energy, Vol. 1, 1988, pp. 46-69

72. H.Snel, “Review of Aerodynamics for Wind Turbines”. Wind

Energy, Vol. 6, 2003, pp. 203-211

73. J.Tangler, “The Evolution of Rotor and Blade Design”,

NREL/CP-500-28410, Presented at the American Wind Energy

Association Wind Power, Palm Springs, California, 2000

74. P.Fuglsang, “Aerodynamic Design Guidelines for Wind Turbine

Rotors”, CD-Rom proceedings, GRACM congress on

computational mechanics, Patras (GR), Vol. 4, 2002, pp. 27-29

75. H.A.Madse, R.Mikkelsen, J.Johansen and C.Bak and

N.NSorensen, “Inboard Rotor/Blade Aerodynamics and its

Influence on Blade Design”, 2005, pp. 1559

76. S.Rajakumar, “Computational Fluid Dynamics of Wind Turbine

Blade at Various Angles of Attack and Low Reynolds Number”,

International Journal of Engineering Science and Technology,

Volume 2(11), 2010, pp. 6474-6484

77. J.Colman, “Lift and Drag Coefficients Behaviour at Low Reynolds

Number in an Airfoil With Gurney Flap Submitted to a Turbulent

Flow”, Part 1”, Latin American Applied Research, Volume 38, 2008,

pp. 195-200

78. D.W.Bechert, R.Meyer and W.Hage, “Drag Reduction of Airfoils

with Mini Flaps. Can We Learn From Drag on Flies?”, AIAA

Paper, 2000, 2000-2315

166

79. S.A.Ahmadi “A Numerical Investigation on the Dynamic Stall of

a Wind Turbine Section Using Different Turbulent Models”,

World Academy of Science, Engineering and Technology,

Volume 58, 2009, pp. 290-296

80. Victor Maldonado “Active Control of Flow Separation and

Structural Vibrations of Wind Turbine Blades”, Wind Energy

Volume 13, 5 May 2009, pp. 221-237

81. Robert E.Sheldahl and Paul C.Klimas, “Aerodynamic

Characteristics of Seven Symmetrical Aerofoil Sections Through

180-Degree Angle of Attack for Use in Aerodynamic Analysis Of

Vertical Axis Wind Turbines”, A Report of Sandia National

Laboratories, 1981

82. Instruction manual of wind tunnel supplied by Ind-Lab

Equiments, Bangalore

83. T. Karasawa, M.Tanaka, K.Abe, S.Shiga and T. Kurabayashi “

Effect of Nozzle Configuration on the Atomization of a Steady

Spray”, At. Sprays, 1992, 2, pp. 411-426

84. E.Ghassemieh, H.K Versteeg and M. Akar, “ The Effect of Nozzle

Geometry on the Flow characteristics of Small water Jets”, Proc.

IMechE, Vol.220,PartC: J.Mechanical Engineering Science,2006,

pp. 1739-1753

85. R.K.Rajput, "A Text Book of Manufacturing Technology

(Manufacturing Processes”, Laxmi Publications Private

Limited, 2008

167

86. R.C.Sachdeva “Fundamentals of Engineering Heat and Mass

Transfer”, New Age International Publishers Limited, 2005

87. P.K.Mukharjee and S.Chakravorthy, “Electrical Machines”,

Dhanpat Rai Publications (P) Limited, New Delhi, II Edition, 2001.

88. Vlad Bezprozvannkh and Hank Mottl, “The Ranque-Hilsch

Effect: CFD Modelling” Dycor Technologies, 17944-106A,

Edmonton, AB, Canada T5SIV3

89. Z.U.A.Walsi, “Fluid Dynamics-Theoretical and Computational

Approaches”, CRC Press,1998

90. P.Wesseling, “Principles of Computational Fluid Dynamics”,

Springer Verlag Berlin Heiderbrg, Newyork, 2000

91. John D.Anderson, Jr “Computational Fluid Dynamics – The

Basics with Applications”, McGraw Hill- Inc, 1995

92. Modi and Seth, “Hydraulics and Fluid Mechanics including

Hydraulic Machines (In S.I Units)”, Standad Book House, 2010.

93. B.Sreenivasa Reddy and K.Hema Chanda Reddy, “Thermal

Engineering Data handbook”, I.K International Publishing

House Limited, I Edition, 2008

94. E. Ronald Walpol and H. Raymond Myer, “Probabibility and

Statistics for Engineers and Scientists”, Prentice Hall, Inc., 1993

168

LIST OF PATENTS AND PARTICULARS

The designs developed during the work carried out for the present

thesis, was awarded patents in India. The details are furnished below.

Patents and Publications in Patent Journals

(1) Patent designs issued by India Patent Office under the title

“High wind Power Generator (231387)” dated 13-09-2010 under

the class 13-01. The design was published in “India Patent

Journal” dated 27-05-2011, No. 21/ 2011

(2) Patent designs issued by India Patent Office under the title

“Wind Thermal Accumulator (226994)” dated 29-01-2010 under

the class 13-02. The design was published in “India Patent

Journal” dated 29-07-2011, No. 30/2011

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Patents on High Wind Power Generator

The practical application of multiple nozzle system in the field of

wind energy is represented below using innovative design of High

Wind Power Generator. Certificate issued by India Patent Office is

presented in the next section.

Front View of Rear Front View

High Wind Power Generator of High Wind Power Generator

Right Side View of Perspective View of High Wind Power Generator High Wind Power Generator

170

Certificate of Patent Registration for High Wind Power Generator

171

Patents on Wind Thermal Accumulator

The fabrication of multiple nozzle system was also awarded design

patents by India Patent Office under the name “Wind Thermal

Accumulator”. The design of multiple nozzle system is presented

below. The certificate issued by India Patent Office is enclosed in the

next section.

Design of Wind Thermal Accumulator

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Certificate of Patent Registration for Wind Thermal Accumulator

173

Publication Particulars in India Patent Journals

OFFICE OF CONTROLLER GENERAL OF PATENTS DESIGNS AND

TRADEMARKS

Indian Design Application Information Retrieval System

Detail

APPLICATION

NUMBER 231387

CBR NUMBER 6194

CBR DATE 13/09/2010 15:39:27

NAME OF ARTICLE HIGH POWER WIND TURBINE WITH THERMAL

ACCUMULATOR

NAME OF

APPLICANT AVVARU VENKATA SATYANARAYANA

FILED AT Kolkata

Application Status

Design Accepted and Published, Journal No 21/2011 and Journal Date 27/05/2011

OFFICE OF CONTROLLER GENERAL OF PATENTS DESIGNS AND

TRADEMARKS

Indian Design Application Information Retrieval System

Detail

APPLICATION

NUMBER 226994

CBR NUMBER 753

CBR DATE 29/01/2010 15:22:39

NAME OF ARTICLE WIND ENERGY CONVERSION ( A SOURCE OF NON-

CONVENTIONAL ENERGY)

NAME OF

APPLICANT AVVARU VENKATA SATYANARYANA

FER DATE 22/03/2010

FILED AT Chennai

Application Status

Design Accepted and Published, Journal No 30/2011 and Journal Date 29/07/2011

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LIST OF PUBLICATIONS

(1) A.Venkata Satyanarayana, B.Sreenivasa Reddy and K.V Sharma

“Experimental Investigation on Eternal Power Wind Turbine

with Thermal Accumulator”, International Journal of

Multidisciplinary Research and Advances in Engineering

(IJMRAE), Ascent Publications (2010), pp. 431-441

(2) A.Venkata Satyanarayana, B.Sreenivasa Reddy and K.V Sharma

“Experimental Investigation of Laboratory Model Wind Mill Using

Convergence Theory”, International Journal of Engineering

Research and Industrial Applications (IJERIA), Ascent

Publications (2010), pp. 59-69

Possible Publications

(1) A.V.Satyanarayana, K.V Sharma, B.Sreenivasa Reddy, “Power

Coefficient Enhancement of Horizontal Axis Wind Turbine using

Multiple Nozzle System: An Experimental Investigation”,

International Journal of Ambient Energy, Published by Taylor

and Francis

Participation In Sttp/Sdp, Etc, Relevant to Research

(1) Participated in AICTE sponsored Staff Development Program on

“Inculcating Research Aptitude in Engineering Faculty” from

3-16 May, 2008 at P.S.G College of Technology, Coimbatore

(2) Participated and published the research paper at International

Conference on “Wind Energy: Trends and Issues” at National

Institute of Technical Teacher’s Training and Research Institute

(NITTTR), Bhopal, held from 5-7 January, 2006

175

(3) Participated in Short Term Training Program on “Machine

Dynamics and Heat Transfer Problems” at Lakki Reddy and Bali

Reddy College of Engineering, Mylavaram held from 26 -30

June, 2006

(4) Participated in a two-day National Level work shop on

“Computational Fluid Dynamics and Applications” conducted by

G.Pulla Reddy Engineering College (Autonomous) on 10-11

December, 2010