The course of altering “wind flow energy” into mechanical energy by means of two counter-rotating wind helms is considered in this article. Mechanical energy is then transformed into electrical energy in a generator where the carcase and the inductance switch are in reverse order. This counter-rotation principle increases the relative speed between the magnetic field and the armature, thereby improving the overall efficiency of energy conversion. The key purpose of this investigation is to advance an effective power source system for independent customers grounded on a specifically planned wind power enterprise with an improved wind energy use constant. The emphasis of the paper is to fix the best strategy parameters of the wind turbine by performing mathematical modelling of the electricity generation process based on the counter-rotation principle and the developed physical prototype. In order to evaluate the key performance parameters for efficient power supply to autonomous consumers, agriculture experimental studies were conducted on the prototype. The key project and techno-economic dials comprised the optimisation of wind power enterprise data, wind helm extents, their comparative placement, and producer control production as purposes of the predictable wind rapidity. The practical implementation of the proposed design was demonstrated by patents granted for a wind generator with variable rotor torque (Patent of the Republic of Kazakhstan No. 36903; Eurasian Patent No. 047230). The results demonstrated that the developed wind turbine achieved higher energy efficiency compared to the conventional single-rotor systems. Thus, the proposed design is suitable for applications in alternative energy and decentralised power supply for remote agrarian customers.
Issenov et al. (Mon,) studied this question.