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Design of transportable wind turbine (HAWT) with self - adjusting system

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Języki publikacji
EN
Abstrakty
EN
In the paper authors presented an innovative design of the transportable horizontal axis wind turbine with a capacity of 3.5 kW, which can be use generally in hard field conditions. Simple, lightweight, and inexpensive design gives wide possibilities of its effective use. The self-adjusting system with the turbine protection against exceeding the speed limit ensures practically maintenance-free operation. The self-adjusting system provides continuous setting of the wind turbine on the wind direction, and at the same time protects of the main rotor HAWT (Horizontal Axis Wind Turbine) against excessive speed in strong winds. This solution can replace the most commonly used solution like the directional rudder or the auxiliary wind motor, which usually requires using the generator rotor brake, because works without negative impact to the wind turbine (a low gyroscopic torque) and does not require additional electric power from outside. The use of ballast in exchange for the existing installation of the mast support structure to the foundation makes the project of the wind turbine proposed by the authors more transportable. The design a wind turbine with low power, which can be easily assembled, leave to exploitation, disassembled and then transported to the new place of work without anchoring to the foundation which are permanently linked with a ground become the main goal of the work.
Twórcy
autor
  • Cracow University of Technology Faculty of Mechanical Engineering, Institute of Machine Design Jana Pawła II Av. 37, 31-864 Cracow, Poland tel.: +48 12 3743409, fax: +48 12 3743360ł
autor
  • Cracow University of Technology Faculty of Mechanical Engineering, Institute of Machine Design Jana Pawła II Av. 37, 31-864 Cracow, Poland tel.: +48 12 3743409, fax: +48 12 3743360
Bibliografia
  • [1] Augustyn, M., The study of aerodynamic forces on the turbine blades with use aerodynamic balance, Monograph, Published by Cracow University of Technology, 2012 [in Polish].
  • [2] Flaga, A., Modelling of aerodynamically and mechanical characteristic of different type of wind rotors, Environmental Effects on Buildings and People: Actions, Influences, Discomfort, eds.: A. Flaga, T. Lipecki, Polish Associations for Wind Engineering, Cracow 2012 [in Polish].
  • [3] Ryś, J., Homing head unit of wind turbine with respect to wind direction, Inventive design, No. P-298964, 1993 [in Polish].
  • [4] Hau, E., Wind turbines: Fundamentals, Technologies, Application, Economics, Springer Verlag, Berlin 2000.
  • [5] Ryś, J., Augustyn, M., Experimental studies of a two-coherent cross-section blade of wind rotor with vertical axis - motion and a propelling torque of wind turbine, Technical Journal Mechanika, Published by Cracow University of Technology, 6-M/2012, Is. 11, pp. 93-115, 2012 [in Polish].
  • [6] Ryś, J., Augustyn, M., The guidance system of horizontal axis wind turbine (HAWT) onto wind direction with the collateral of exceeding of speed limit, The patent application under, P.400514, 2012 [in Polish].
  • [7] KOMEL Institute, Research & Development Centre of Electrical Machines, The three-phase synchronous generator AC voltage activated by the permanent magnet, User manual (Technical and motion documentation) [in Polish].
  • [8] “SWIND” Wind turbine. Wind turbine 3.5m, User manual and safe exploitation [in Polish].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-55d21b5d-1d28-4c80-af09-14a7b4723fcd
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