he BSWT 5.0 kW Wind Turbine is a heavy-duty model designed for industrial, commercial, grid-connected, coastal, and decentralized wind-energy applications. Equipped with a permanent-magnet neodymium alternator, carbon-fiber composite blades, and industrial-grade construction, the turbine is designed for reliable operation in demanding environments. Key Highlights - Rated Power: 5.0 kW - Reported daily generation: ~70–100 kWh/day in strong-wind locations - Rotor diameter: ~6.0 m - Swept area: ~28.3 m² - Cut-in wind speed: ~3.0 m/s - Rated wind speed: 11–12.5 m/s - 3 high-strength carbon-fiber composite blades - Neodymium permanent-magnet alternator - Alternator efficiency: 92%+ - Survival wind speed: up to 60 m/s - 18–24 m tubular/lattice tower - Side furling + dump load + electronic torque control - Passive tail-fin yaw - Grid-connected and hybrid-system compatible - Optional IoT monitoring Technical Specifications Parameter Specification Model BSWT 5.0 kW Rated Power 5.0 kW Axis Horizontal Orientation Upwind Blades 3 Blade Material Carbon Fiber Composite Rotor Diameter ~6.0 m Swept Area ~28.3 m² Cut-In Wind Speed ~3.0 m/s Rated Wind Speed 11–12.5 m/s Cut-Out Wind Speed 16–18 m/s Survival Wind Speed 60 m/s Alternator Permanent Magnet Radial Flux Magnet Neodymium Efficiency 92%+ Housing Cast Aluminum + Marine-Grade Coated MS Shaft SS304 Heavy Duty Tower 18–24 m Tubular / Lattice Approx. Weight 250–300 kg Overspeed Protection Furling + Dump Load + Electronic Torque Control Yaw Passive Tail Fin Cluster / Mini Wind Farm Configuration 10 × BSWT 5.0 kW = 50 kW installed capacity Multiple turbines can be designed as a common-output system for suitable industrial or captive-power projects, subject to the applicable electrical, grid-interconnection, protection, and regulatory requirements. Grid & Power Electronics - Grid-connected inverter integration - 240 V / 380 V system configurations, subject to inverter and site design - MPPT-based energy control - Automatic dump-load protection - Overspeed control - LCD monitoring - kW / kWh monitoring - Wind-speed monitoring - Voltage and current monitoring - Optional IoT remote monitoring Applications ?? Industrial factories ?? Commercial buildings ?? Coastal installations ? Captive-power projects ??? Distributed wind farms ?? Wind + solar hybrid plants ?? Institutions and campuses ??? Coastal and island applications ?? Renewable-energy microgrids Energy & ROI Based on the generation assumptions you provided: Parameter Estimated Value Daily generation 70–100 kWh Annual generation ~25,000–36,000 kWh Assumed electricity value ?10/kWh Annual energy value ?2.50–3.60 lakh Design life 20+ years Stated payback estimate ~3 years Important brochure wording: The 70–100 kWh/day, annual generation, payback period, and “5 kW wind = 25 kW solar” comparison should be presented as site-dependent/field-performance claims, not guaranteed specifications. Actual output depends heavily on wind-resource quality, hub height, turbulence, availability, electrical losses, and site conditions. Environmental Impact Based on the assumptions supplied: - Estimated CO2 reduction: ~20–29 tonnes/year - 20-year estimate: ~400–580 tonnes CO2 These figures should be identified as estimates, since avoided emissions depend on the electricity generation source being displaced. Why BSWT 5.0 kW? ? Heavy-duty commercial wind turbine ? Designed for industrial and coastal applications ? 5 kW rated generation capacity ? High-efficiency permanent-magnet alternator ? Cluster configuration possible — 10 × 5 kW = 50 kW ? Wind + solar hybrid compatible ? Optional IoT monitoring ? Industrial-grade construction ? Designed for long operating life ? Balaji Systems engineering and after-sales support