Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990

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adam_text CONTENTS Conference Sponsors and Committees XII Foreword by Dr Wolfgang Palz XIII Photo Montage XIV List of Exhibitors XVI Author Index 769 CEC WIHD ENERGY PROGRAMMES Wind energy - on the verge of a break-through? H.J.M. Beurskens, ECN, The Netherlands. The European Community wind energy R & D programme. W. Palz and G. Caratti, CEC DG XII, Belgium. The European Community s demonstration programme for wind energy. G.L. Ferrerò and K. Diamantaras, CEC DG XVII, Belgium. Also: Past and future aspects of the CEC s dissemination activities in the fields of renewable energy technologies. G. Molina and K. Diamantaras, CEC DG XVII, Belgium. NATIONAL REVIEHS NR1 Wind energy activities in Denmark. P. Nielsen, DEFU, Denmark. HR2 Finnish wind energy programme. E.T. Peltola, Technical Research Centre of Finland. NR3 The German Government s new initiatives for wind energy. P.G. Gutermuth, Federal Ministry of Economics, Germany. ШЧ Wind energy in the Netherlands. R. de Bruijne, Netherlands Agency for Energy and the Environment, The Netherlands. NR5 Wind energy activities in Sweden. S. Engström, National Energy Administration and G. Svensson, KVAB, Sweden. NR6 Developments in the UK Department of Energy s wind energy programme. R.A. Meir, Department of Energy and D.I. Page, ETSU, U.fU -- NR7 Wind energy developments in the Americas. R. Swisher, A.W.E.A., D.F. Ancona, U.S. Department of Energy, U.S.A.; J. Edworthy, Canadian Wind Energy Association, Canada. NR8 Wind diesel project in El Cuy Argentine Patagonia. E. Spinadel and C. Luna Pont, university of Buenos Aires, Argentina. NR9 The research and development of wind turbine generator systems in Japan. H. Matsumiya, Mechanical Engineering Laboratory, MITI; T. Kobayashi, A. Ishida and A. Tanaka, Sunshine Project AIST, HITI, Japan. RESOURCE ASSESSMENT! Siting. Calculation Methods. Terrain Effects Ã1 Wind resources in complex terrain, measurements and models. E.L. Petersen, Risc National Laboratory, Denmark, A2 This paper has been withdrawn. A3 A telescoping procedure for local wind energy potential assessment. H, Tombrou, Public Power Corporation; D.P. Lalas, Centre for Renewable Energy Sources, Greece. Ill A4 The Hjardemal escarpment experiment. M. Courtney, J. Hgíjstrup and N. 0. Jensen, Risjí National Lab., Denmark. A5 Short term prediction of local wind conditions. Ib Troen and L. Landberg, Ris# National Laboratory, Denmark. A6 Effects of wind shear and turbulence on wind turbine power curves. D.L. Elliott, Pacific Northwest Laboratory and J.B. Cadogan, U.S. Department of Energy, U.S.A. A7 Experimental evidence of flow situations in coastal regions potentially hazardous to wind turbine installations. A.-S. Sraedman, Uppsala University, Sweden. RESOURCE ASSESSMENT: Meteorological Data A8 Identification of wind and solar sites in Liguria. S. Farruggia, F. Boschetti, SYSGEN srl; CF. Ratto, B. Gabrielli, S. Nosengo, University of Genoa; R. Mosiello, A. Ricci, ENEA, Italy. A9 Study of wind conditions and mesoscale turbulence in Tarifa (Spain). A. Palomares, IER-CIEMAT, Spain. A 10 The program for wind resource exploitation in Somalia. R. Pallabazzer, Università della Calabria and A. Boccazzi, CNPM/CNR, Italy; A.A. Gabow, National University of Somalia. A11 Wind energy in northern Finland. B. Tamme lin, Finnish Meteorological Institute, Finland. A 12 This paper has been withdrawn. A13 Wind resources on the southern coast of the Iberian Peninsula. P. Moreno, R. Zubiaur, P.M.S. Α.; Α. Hormigo, Compañía Sevillana de Electricidad SA; J.M. Escudero, IDAE, Spain. A14 This paper has been withdrawn. A15 This paper has been withdrawn. A16 This paper has been withdrawn. A17 A system for wind arid turbulence measurements in a wind farm. K. Lundin, A.-S. Smedman and U. Högström, Uppsala University, Sweden. A18 Performance of a laser doppler anemometer for the measurement of wind velocities . Iti. Reichmann, J. Völklein and F. Durst, Univ. Erlangen-Nürnberg, Germany. RESOURCE ASSESSMENT: Calculation Methods A19 Conclusions of the investigations for siting several 55 kW wind units in the coastal complex area. G. Voicu, M. Tudor, C. Tanfcäreanu and C.S. Pop, Energy Research and Modernising Institute, Romania. A20 Experience in the appraisal of the wind characteristics of a site of complex topography. S.M. Barton, W.A. Derrick and R.S. Hunter, National Engineering Lab., O.K. A21 Wind field numerical simulations: A new user-friendly code. C.F. Ratto, R. Festa, Univ. of Genoa; 0. Nicora, SYSGEN srl; R. Mosiello, A. Ricci, ENEA; O.A. .Frumento, International Centre for Theoretical Physics, Italy, D.P. Lalas, CRES, Greece. Ä22 Wind energy potential over the Evia wind park - Greece. D. Trifonopoulos and G. Bergeies, National Tech. Univ. of Athens, Greece. A23 Wind field adjustment: Resolution by adaptive mixed finite element method and multigrid algorithm. L. Ferragut, Universidad Politecnica de Madrid; G. Montero, G. Winter, R. Montenegro, Universidad de Las Palmas G.C., Spain. A2i) An assessment of the economic wind energy resource in the UK H.G. Parkinson, ETSU, U.K. A25 Gust statistics using the rainflow count method. H. Bergström, Uppsala University, Sweden. IV RESOURCE ASSESSMENT: Wake Effects В1 Full scale measurements in wind turbine arrays. G.J. Taylor, National Power Technology & Environment Centre, O.K. B2 Wake and wind farm modelling. L. van der Snoek, MT-TNO, The Netherlands. B3 Development of the advanced AV-Lissaman wind turbine array interference model. P.B.S. Lissaman and D.T. Lindberg, AeroVironment Inc; J.B. Armstrong, SeaWest Industries Inc., USA. B4 Numerical modelling of wind turbine wakes. A. Crespo and F. Manuel, Universidad Politécnica de Madrid; J. Hernandez, Ciudad Universitaria, Spain. В5 Turbulence measurements in a windfarm. J. Hecjstrup, Riser National Laboratory, Denmark. B6 A gust model for the design of large horizontal axis wind turbines: completion and validation. D. Delaunay and J.P. Locateli!, CSTB, France. B7 The effect of the non-uniformity of the wind velocity field in the optimal design of wind parks. S.G. Voutsinas, K.G. Rados and A. Zervos, National Technical University of Athens, Greece. B8 Results of wake measurements at the Alta Nurra Wind Power Station. G. Botta and A. Visco Gilardi, ENEL, Italy. B9 Full-scale cluster effect measurements at the wind farm in Zeebrugge. J. van Leuven, University of Antwerp, Belgium. B10 Calculation of velocity deficits in the wake of a WECS. H.D. Kambezidis, T.P. Georgakopoulos and D.N. Asimakopoulos, National Observatory of Athens, Greece. TECHNOLOGY DEVELOPMENT: Aerodynamics C1 Atmospheric performance of the special purpose SERI thin-airfoil family; final results. J. Tangier, B. Smith, D. Jager and T. Olsen, Solar Energy Research Institute, U.S.A. C2 Additional loads caused by ice on rotor blades during operation. H. Seifert, German Wind Energy Institute and C. Schloz, German Aerospace Research Establishment, Germany. C3 Application of a stalled HAWT rotor performance code. R.I. Rawlinson-Smith and R.L. Hales, Cranfield Inst. of Technology, U.K. СЧ Aerodynamic measurements on a small HAWT rotor in axial and yawed flow. R.L. Hales and J.M. Belila, Cranfield Institute of Technology, U.K. C5 Velocity measurements in the near wake of a model rotor and comparison with theoretical results. N.J. Vermeer and G.J.W. van Bussel, Delft University of Technology, The Netherlands. C6 The use of boundary layer control on wind turbines: a feasibility study. W.S. Bannister, Napier Polytechnic of Edinburgh; W.M. Somerville, Windharvester Limited; J.F. Fawkes, Harlee Engineering Co. Ltd., O.K. C7 On the relative importance of rotational, unsteady and three-dimensional effects on the HAWT rotor aerodynamics. H.A. Madsen and H.F. Christensen, Risrf National Laboratory, Denmark. C8 Calculation and measurements of wakes and dynamic loads in wind farms. 13. Hassan and A. Garrad, Oarrad Hassan & Partners; H.G. Parkinson, EÏGU; J.F. Ainalie, National Power, U.K. C9 Numerical simulation of HAWT blade section characteristics using advanced computational tools, B. Bouras, K. Giannakoglou, P. Chaviaropoulos and K.D. Papailiou, National Technical University of Athens, Greece. C10 WECS blade airfoils - the NACA 6З-ЧХХ series. W. A. Timmer, Delft University of Technology, The Netherlands. C11 Instantaneous pressure distribution measurements on the blades of a vertical axis wind turbine. A. Zervos and E. Morfiadakis, National Technical University of Athens, Greece. C12 Experimental determination of the aerodynamic forces on a simulated Darrieus wind turbine blade. A. Laneville, P. Vittecoq and A. Mazouzi, University of Sherbrooke; P. Penna, NRC-NAE, Canada. C1 3 Performance of new MEL- wing sections for wind turbines. H. Matsumiya, Y. Tsutsui and S. Kawamura, Mechanical Engineering Lab., MITI; К. Kieda, Advanced Engineering Services; E. Kato, S. Takáno and Ï. Toe, Ibaraki University, Japan. C14 A general free-wake efficient analysis of horizontal axis wind turbines. A. Rosen, I. Lavie and A. Seginer, Teehnion - IIT, Israel. C15 An integrated rotor and turbulent wake model compared with experiment. H.A. Madsen and U.S. Paulsen, Risei National Laboratory, Denmark. C16 Atmospheric turbulence characteristics in the rotating frame of reference of a WECS rotor. J.B. Dragt, ECN, The Netherlands. C17 Studies on horizontal axis wind turbines with tip attachments. Ï. Shimizu and S. Matsumura, Hie university; K. Kikuyama and Y. Hasegawa, Nagoya university, Japan; G.J.W. van Bussel and A. Bruining, Delft University of Technology, The Netherlands. TECHNOLOGY DEVELOPMENT: Aeroelastics and Structural Dynamics D1 Aeroelastic rotor system code for horizontal axis wind turbines: PHATAS-II. H. Snel and C. Lindenburg, ECN, The Netherlands. D2 Aerodynamic and aeroelastic analysis of wind turbines. G. Arsuffi and F. Ionta, ENEA; F. Mastroddi, F. Rispoli and L. Morirlo, University La Sapienza , Italy. D3 Validation of the aeroelastic simulation program for horizontal axis wind energy converters. S.N. Wagner and Ch. SchSttl, Univ. der Bundeswehr / WIP-Consult, Germany. D4 Dynamics of a stall regulated horizontal axis wind turbine using a non- . linear time domain model. J.T. Petersen and P.H. Madsen, Ris<* National Laboratory, Denmark. D5 Rotor loading - the influence of dynamics. F. Rasmussen and P.H. Madsen, Ris# National Laboratory, Denmark. D6 Effect of coning and tilt angle on HAWT. C. Brown, R. Derdelinckx, L. Dewilde and С Hirseh, Vrije universiteit Brussel, Belgium. D7 Investigation of HAWT and VAWT aerodynamics for large WEC design. K.P. Vashkevitcn and V.V. Samsonov, Branch of Central Aerohydrodynatąic Institute (TsAGI), Ü.S.S.R. D8 Fatigue testing of GL-EP in wind turbine rotor blades. C.W. Kensche and T. Kalkuhl, German Aerospace Res. Establishment, Germany. TECHNOLOGY DEVELOPMENT: Aeroelastics and Structural D9 Blade and rotor geometry optimization on vertical axis wind turbine. D. Bedard, ENEA-CASACCIA, Italy. D 10 Fatigue loads of water pumping windmills. F. Goezinne, Goezinne & Veldkamp Renewable Energy Cons., The Netherlands. D11 Frequency responses of upward tilt-controlled wind turbine to wind speed direction changes. T. Sakakibara and H. Shimizu, Toyohashi University of Technology, Japan. VI DESIGN LOADS, STRESSES AND RELIABILITY E1 Comparison of standards for wind turbines - overview. H.G. Matthies, H. Meier and M. Schulz, Germnischer Lloyd, Germany. E2 This paper has been withdrawn. E3 This paper has been withdrawn. EU Development of structural condition monitoring techniques for composite wind turbine blades. B.R. Clayton, Nottingham university; N. Aftab, L.J. Bond, University College London; A.G. Dutton, A. Irving and N. Lipman, Rutherford Appleton Lab., U.K. E5 This paper has been withdrawn. TESTING AND QUALITY CONTROL E6 Testing mothodology for large scale wind turbines. R. Derdelinckx, S. Haesaerts, Ch. Hirsch, W. Teugels, Vrije Univ., Belgium. E7 Experimental and design methods of studies of wind turbine aerodynamics. K.P. Vashkevitch and V.V. Samsonov, Branch of Central Aerohydrodynamic Institute (TsAGI), U.S.S.R. E8 Quality control in wind turbine blades. M. Esteban and F. Arias, CIEMAT-IER; H. Mariani, Det Norske Veritas, Spain. E9 Uncertainties in energy production forecasting. S. Frandsen and C.J. Christensen, Risgf National Laboratory, Denmark. DESIGN: Aerodynamics ЕЮ Wind tunnel test of rotor aerodynamics with various surface roughness. S. Kimura, Kanagawa Institute of Technology; K. Abe, M. Iuchi, H. Munakata, Ninon University Research Institute of Science and Technology, Japan. CERTIFICATION AND STANDARDS E11 Wind plant certification. (Abstract only) M. Morysse, Bureau Veritas, France. E12 Recommendations for a European wind turbine standard load cases. F.J.L. van Huile, ECN, The Netherlands and P.H. Јепзеп, Ris^ National Laboratory, Denmark. WIND INPUT E13 Modelling of extreme wind conditions for wind turbine design. R. Pleune and F. Verheij, MT-TNO, The Netherlands. E14 This paper has been withdrawn. ENERGY CONVERSION E15 Transient electromechanical characteristics of a CSCF WEC. A.I. Estanqueiro, F. Marques da Silva, C. Marques and J.G. Saraiva, National Laboratory of Engineering and Industrial Technology, Portugal. NOISE E16 Aerodynamic noise reduced design of large advanced wind turbines. F. Hagg, Stork Product Engineering BV, The Netherlands. LOADS AND FATIGUE E17 Mind turbine benchmark exercise on mechanical loads. H.J. van Grol, H. Snel and J.G. Schepers, ECN, The Netherlands. E18 The influence of fatigue design line criteria on the rotor blade design. D.R.V. van Delft, Delft University of Technology; F. Hagg and P.A. Joose, Stork Product Engineering, The Netherlands. TESTING E19 Performance of water pumping windmills. D. Veldkamp, Goezinne & Veldkamp Renewable Energy Cons., The Netherlands. VII WIND FARM EXPERIENCE F1 Commercialisation of windfarms in Europe by the year 2000. P. Musgrove and D. Lindley, Wind Energy Group Limited, U.K. F2 Experience with utility windfarms in Western Denmark. J.K. Vesterdal, ELSAM, Denmark. F3 Main results of the research programme of the Dutch experimental windfarm. H.K. Hutting, NV Kema, The Netherlands. F^t Hacia un parque eolico de 50 MW en el sur de Espafia. Towards a 5OMW wind farm in the south of Spain. (In Spanish. English summary) J.M.G. Moreno, PESUR; A.L.H. Leon, Cia Sivillana de Electricidad SA, Spain. STUDY ON THE NEXT GENERATION OF LARGE WIND TURBINES (Introduction) Part 1. Technical concept analysis. H. Snel, ECN; T. van Holten and F. Follings, Consultants to ECN, The Netherlands. Part 2. Manufacturing cost analysis. R. Harrison, G. Jenkins. A.N. Macrae, Sunderland Polytechnic, U.K. Part 3· Site and installation costs. Operation and maintenance costs. P. Nielsen, DEFU, Denmark. Part Ч. Energy cost ■ analysis and conclusions. E. Hau, ISET, Germany. F5 This paper has been withdrawn. F6 This paper has been withdrawn. F7 Monte Ahumada project. (In Spanish. English summary) T. Bolado, A. Vilas, J.L. Soler, A. Garrido and V. Bencomo, ENDESA, Spain. FS This paper has been withdrawn. F9 Yorkshire Water s developments of wind energy generation. K.F. Pitcher and K.S. Webster, Yorkshire Water Services Pic, U.K. LARGE WIND TURBINE PROTOTYPES G1 The windpark of Jade-Windenergie at Wilhelmshaven - Federal Republic of Germany. Experiences of the first 10 months. C.R. Ettiseher, Fichtner Dev. Eng. and G.J. Grom, Jade-Windenergle, Germany. G2 The commissioning and early operation of the 1 MW wind turbine at Richborough. J. Rea and A. Boston, PowerGen pic, U.K. G3 Operation and maintenance experiences and test results from the AWEC-60 project. E. Soria and F. Avia, CIEMAT-IER; A. Matas, Union Electrica Fenosa; J.M. Guisado, ASINEL, Spain. G4 Gamma 60 1.5 MW wind turbine generator. S. Avolio and t. Calò, Äeritalia S. A.I.p. A.s U. Foli and L. Rubbi, ENEA-FAREj C. Casale and E. Sesto, ENEL-CREl, Italy. G5 The realization of the З Ми wind power project NMsudden II in Sweden. J. Blix, Vattenfall and P. Svenkvist, Kvaerner Tuť-bin AB, Sweden. G6 Experience with the ¥AWT 850 demonstration project. I.D. Mays, C.A. Morgan, M.B. Anderson and S.J.R. Powles, Vertical Axis Wind Turbines Limited, O.K. 07 Operational experience with the Wind Energy Group s MS-2 and MS-3 wind turbines in California and Europe. D. Lindley, P. Musgrove, C. Gamble and G. Henderson, Wind Energy Group Limited, U.K. G6 Commissioning and first demonstration activities on the single blade medium size WECS M30. E. Dalpane, Riva Calzoni SpA; U. Foli and L. Pirazzi, ENBA-FARE; C. Casale, ENEL-CREl, Italy. G9 Demonstration of a 1000 kW stall regulated wind turbine for experimental use. C. Skamris and K. Dyre Jespersen, ELKRAFT Power Company Ltd., U.K. VIII G 10 LS1 performance. J. G. Warren, С. White and P.B. Simpson, Wind Energy Group Limited, U.K. G11 Operating experience with the Tjaereborg wind turbine, 1989-1990. P. Friis and P.S. Christiansen, Elsamprojekt A/S; K.S. Hansen, Technical University of Denmark, Denmark. TECHNOLOGY DEVELOPMENT.· Control and Components Щ Wind turbine control objectives and design. W.E. Leithead, S. de la Salle and D. Reardon, Univ. of Strathclyde, U.K. H2 Modelling and control of flexible wind turbines. P.M.M. Bongers, S. Dijkstra and O.H. Bosgra, Delft University of Technology, The Netherlands. H3 Fast-acting aerodynamic control of horizontal-axis wind turbines. C.G. Anderson, J.-B. Richon and T.J. Campbell, Univ. of Edinburgh, U.K. НЧ The development of advanced rotor systems: a survey of the FLEXHAT program including full scale results. G.A.M. van Kuik and R.H.F. Tikkemeijer, Stork Product Engineering; J.W.M. Dekker, ECN, The Netherlands. H5 A theoretical investigation of the impact of pitch control on the fatigue of wind turbines. D.C. Quarton, Garrad Hassan 4 Partners, U.K. H6 Design, development and manufacture of the Polymarin11 1 MW stall rotor. B. Roorda, Polymarin BV, The Netherlands. H7 Development of composite blades for megawat size wind turbines. F. arias, M. Esteban, F. Avia and E. Soria CIEMAT-IER; S. Campos, Astafersa, Spain. Н8 This paper has been witndrawn. H9 The operating characteristics of mechanical governor for a variable-speed wind turbine generator. S. Kawamura, H. Matsumiya, X. Tsutsui, T. Yaroane, Y. Kumeoka, H. Mizutani, Y. Nii and T. Gotanda, Mechanical Engineering Lab, MITI, Japan. H 10 Electrical system of wind generator ÃWEC -бО. A. Matas, Union Electrica Fenosa SA, Spain. H11 Pulse width modulated dump load control for wind/diesel systems. J.F. Manwell, W.M. Stein, J.G. McGowan, Univ. of Massachusetts, U.S.A. H12 Design, installation and performance analysis of a control system for a wind turbine driven self-excited induction generator. P.G. Casielles and J. Sanz, University of Oviedo; J. Pascual, Gas y Electricidad SA, Spain. H13 Self tuning linear controller for the blade pitch control of a 100 kW WEC. H. BÖhnisch, DLR, Germany and D. Arsudis, AEG Hellas, Greece. AUTQNPMOUS AND WIND/DIESEL APPLICATIONS Л Wind/diesel ■system modelling and design. D.G. Infield, Rutherford Appleton Lab., U.K. j P. Lundsager, Ris/zf Nat. Lab., Denmark; J.T.G. Pierek, ECN and У.А.Р. van Dijk, university of Utrecht, The Netherlands; M. Falchetta, ENEA CRE CASSACIA, Italy j 0. Skarstein, SEM Saeła Ndsvet , Norway and P.D. Lund, NEMO, Finland. J2 Wind/diesel/battery systems - Applications, experience, economy of different system configurations and sizes. G. Cramer, SMA Regelsysteme GmbH; Ы. Kleinkauf, University of Kassel; T. Schott, Institut für Solare Energie-Versorgungstechnik, Germany. J3 Operation experience of wind/diesel system on Dachen Island in P.R.China - EEC and China co-operation project. M. Yundog, Q. Hongjia, ZIMŠ, P.R. China; H. Christiansen, B. S#rensen, COWIconsult; P. Nsfrgârd» Rlsíf Hatlonal Laboratory, Densiark. ЈЧ Computer-aided assessment of maximum wind generation capability of isolated electric power systems. K.H. Mian, Universidad de las Palmas, Spain. IX J5 Operational advantages from the use of AC/DC/AC interface for the connection of wind turbines in diesel power systems. M.P. Papadopoulos and P.B. Malatestas, National Technical University of Athens, Greece. J6 Desarrollo y ensayo de un sistema hibrido eolico-diesel . Hybrid wind-diesel system development and testing. (In Spanish. English summary) J. Pascual Tortella, Gas y Electricidad SA, Spain. J7 Optimization technical-economic of the desalination system worked by wind energy. J.A. Carta Gonzalez, R. Calero Pérez, Univ. de las Palmas, Spain. J8 Studies on hybrid generation system of horizontal axis wind turbine and diesel engine. Ï. Shimizu, S. Morisawa, Mie University; K. Setci, Tokai University, Japan. J9 Characteristics of the power output of wind farms and large scale dispersed wind energy systems. H.G. Beyer, J. Luther, T. Pahlke, W. Schmidt, R. Steinberger-Willms, H.-P. Waldl and Ü. de Witt, Universität Oldenburg, Germany. J10 Wind energy conversion schemes and electric power supply quality. A.M. Sharaf and R.M. Hilloowala, University of New Brunswick; M. Lodge, Resource Ventures Inc., Canada. CEC WIND ENERGY PROGRAMME Past and future aspects of the CEC s dissemination activities in the fields of renewable energy .technologies . G. Molina and K. Diamantaras, CEC DG XVII, Belgium. UTILITY APPLICATIONS K1 Evaluation of wind energy in Northern California including its fit to utility hourly loads. D.R. Smith and M.A. Ilyin, Pacific Gas and Electric Company, U.S.A. K2 Wind power park. Measurements on wind and power conditions in the cluster and voltage quality on the connected grid. P. Rasmussen and J. Lakkenborg, Folkecenter for Renewable Energy, Denmark. КЗ Modelling of wind power in the Finnish power supply system. E.T. Peltola, Technical Research Centre of Finland and J. Peťájä, Helsinki University, Finland. K4 Wind and load forecasting for integration of wind power into a meso-scale electrical grid. A. Fellows and D. Hill, University of Strathclyde, U.K. K5 The first off-shore wind farm in the Danish wind power programme. K. Dyre Jesper sen, ELKRAFT Power Company Limited, Denmark. Кб Implementation of off-shore wind power plant. S.A. Jensen, COWIconsult A/S, Denmark. K7 Autonomous wind-diesel pump system in Spain. P. Prats, Ecotecnia S.Coop, Spain. K8 A mechanical hybrid wind/diesel system based on MEL s Windmel wind turbine. J. Bass, Guest Researcher and H. Matsumiya, Mechanical Engineering Laboratory? S Aoki, Yamaha Motor Company Limited, Japan. fC9 Wind integration into a diesel power grid of a Greek island. A.I. Androutsos and A.I. Anďreadis, Public Powei Corporation; A.V. Machias, National Technical University of Athens, Greece. K10 Anholt 55 kW wind turbine. Operation strategy, experience and results. A. Rasmussen and J. Krj.3tiansen, Elsamprojekt A/S, Denmark. К 11 Development of a novel small windpump for ultra-reliable low-cost water supply. P.L. Fraenkel, IT Power Limited, U.K. К 12 Effect of wine field properties on the fuel saving potential of wind- diesel systems. H.G. Beyer, T. Degner, H. Gabler and G. Stubbe, Universität Oldenburg, Germany; Wang Cheng-Xu, Tsingnua University, P.R. China. КІЗ Some experiences in designing and building a small wind energy conversion system. Ü. Dominguez, I. Conde and A. Perez, Universidad de Salamanca, Spain. К1Ч Technical feasibility study of the HOLEC autonomous wind/diesel system. J.T.G. Pierlk, ECN and L.A. Bulten, HOLEC Projects BV, The Netherlands. K15 Paper moved to NR8. K16 Dachen Islands wind/diesel facilities. B. Sizfrensen, COWIconsult, Denmark. K17 Wind and solar energy supply for a sewage plant - the Fehmarn project. H. Gabler, G.J. Gerdes and J. Luther, university of Oldenburg, Germany. K18 This paper has been withdrawn. К 19 Wind energy penetration in a local energy system operated on biogas: an EC demonstration project in Chania. D. Papastefanakis, Hellenic Agency for Local Development and Local Government S.A.; L.A. Pyrgiotls, National Technical Univ. of Athens; M. Kavroulakis, Municipal Enterprise of Water and Sanitation of Chania, Greece. K20 Storing wind energy. R. GrUb , Consultant, Germany. USAGE AND THE SOCIAL AND ENVIRONMENTAL COST LI Review of European wind energy technology. J. Schmid and H.P. Klein, Fraunhofer-ISE, F.R. Germany. L2 The Group ENDESA wind energy plan. J. Calvo, Group ENDESA, Spain. L3 Wind energy research activities of the Dutch Electricity Generating Board. N. Halberg, NV Sep, The Netherlands. LU Latest results of the international discussion on the social costs of energy - how does wind compare today? O.H. Hohmeyer, Fraunhofer ISE, Germany. L5 The siting problem: wind power as a social dilemma. M. Wolsink, university of Amsterdam, The Netherlands. L6 A multifaceted study: environmental issues impacting on wind energy developments. P. Bosley, Towson State University and K. Bosley, Wind Energy Cons., U.S.A. L7 The contribution, of the social sciences to wind power research - environmentl ideology and public perception. H. Martin Edge, Robert Gordon s Institute of Technology, U.K. L8 Design recommendations for large WECS. F.J. Pollings, INTRON, The Netherlands. L9 Low frequency sound from wind turbine arrays. W.E. Holley and B.F. Bell, U.S. Windpower Inc., U.S.A. L10 Avoided fuel, capacity and emission costs by wind energy in the Netherlands. A.J.M. van Wijk and W.C. Turkenburg, University of Utrecht, The Netherlands. * L11 This paper has been withdrawn. L12 Possibilities and restrictions, of wind energy use in Central Europe. M. Kaltschmitt, Universität Stuttgart, Germany. L13 This paper has been withdrawn. L14 Simulation of a wind/diesel autonomous energy system for long term studies. J, Kabouris, G.C. Contaxis, National Technical University of Athens, Greece. L15 Investigation of the feasibility of joint production of decentralised wind energy systems for the People s Republic of China. P. Johansen, COWIconsult; P. Lundsager, Riser National Laboratory, Denmark; J.P. Johnson, GQPA-Consultants, F.R. Germany. XI
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spellingShingle Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990
Windenergie (DE-588)4079329-1 gnd
subject_GND (DE-588)4079329-1
(DE-588)1071861417
title Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990
title_auth Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990
title_exact_search Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990
title_full Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990 European Community Wind Energy Conference. Ed. by: W. Palz
title_fullStr Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990 European Community Wind Energy Conference. Ed. by: W. Palz
title_full_unstemmed Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990 European Community Wind Energy Conference. Ed. by: W. Palz
title_short Proceedings of an International Conference held at Madrid, Spain 10 - 14 September 1990
title_sort proceedings of an international conference held at madrid spain 10 14 september 1990
topic Windenergie (DE-588)4079329-1 gnd
topic_facet Windenergie
Konferenzschrift 1990 Madrid
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