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Supplier: Goldwind Science & Technology Co., Ltd.
Description: Founded in Urumqi, China, in 1998, Goldwind is one of the world’s leading wind power companies. The largest player in our industry in China, we have a presence on six continents. In 2015, we were the world’s number one wind turbine manufacturer by newly installed generation
- AC Prime Power Rating (Watts): 1,500,000 watts
- Features: Wind Turbines
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Description: Based on the conditions of different wind regimes and climatic characteristics, Ming Yang develops 1.5MW series of wind turbine of independent intellectual property rights, which attain the goals of "two high and one low" (namely, high generating capacity, high
- Cut-in Wind Velocity: 6.709284038881618 miles/hr
- Cut-out Wind Velocity: 55.91070032401369 miles/hr
- Rated Wind Velocity: 24.153422539973928 to 31.309992181447686 miles/hr
- Survival Wind Speed: 133.0674667711526 to 156.54996090723813 miles/hr
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Supplier: ENERCON GmbH
Description: stability and a long service life. Depending on the wind turbine type and site, the towers are available in various hub heights. Foundation The foundation is the link between the tower and the subsoil, and bears all static and dynamic loads from the wind turbine. The
- Cut-out Wind Velocity: 62.61998436289537 to 76.03855244065838 miles/hr
- AC Prime Power Rating (Watts): 2,350,000.0000000023 watts
- Mounting: Tracking Mount
- Orientation: Vertical axis
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Supplier: Nordex AG
Description: With over 2,700 wind turbines installed, the AW1500 has a long and successful history, which has provided the basis for the evolution of all Acciona Windpower wind turbines. Proven track record With approximately 4,000 MW installed in 15 countries, the AW1500 global
- Cut-in Wind Velocity: 6.709284038881618 to 10.063926058322483 miles/hr
- Cut-out Wind Velocity: 55.91070032401369 miles/hr
- AC Prime Power Rating (Watts): 1,500,000 watts
- Output Options: AC Single Phase Power
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Supplier: Vestas Wind Systems A/S
Description: wind and site conditions, where the 136 m rotor enables great wind capture, at medium-wind conditions. This makes the V136-3.45 MW™ turbine a strong performer with the potential to increase AEP by up to 16 %*, contributing to a lower LCoE. The V136-3.45 MW™ as an IEC IIB
- Cut-in Wind Velocity: 6.709284038881618 miles/hr
- Cut-out Wind Velocity: 50.319630291612306 miles/hr
- AC Prime Power Rating (Watts): 3,450,000.0000000005 watts
- Output Options: AC Single Phase Power
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Supplier: Suzlon Energy Ltd.
Description: 1. S97 90m has the following features:- Tubular tower that reaches a height of 90 meters All steel tower 2. S97 120m has the following features:- A 120 meter tall hybrid tower which is a combination of the lattice and tubular towers All steel tower which combines the lattice and tubular
- Cut-in Wind Velocity: 6.709284038881618 miles/hr
- Cut-out Wind Velocity: 46.964988272171496 miles/hr
- Rated Wind Velocity: 22.364280129605486 miles/hr
- AC Prime Power Rating (Watts): 2,099,999.9999999986 watts
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Standards and Technical Documents - WIND TURBINES \x96 Part 2: Small wind turbines -- 61400-2 CORR 1Supplier: Accuris
Description: WIND TURBINES \x96 Part 2: Small wind turbines
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Supplier: Accuris
Description: Wind turbines Part 27-1: Electrical simulation models - Wind turbines
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Supplier: LM Wind Power
Description: Based on modular technology featuring modular aerodynamics, modular structure and modular manufacturing tooling, LM Wind Power is able to deliver customized blades in mixes of length and structure for 2 MW turbines and extend their life cycle into lower-wind regions. LM
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Description: IEC 61400-27-1:2015 specifies dynamic simulation models for generic wind turbine topologies/concepts/configurations on the market. It defines the generic terms and parameters with the purpose of specifying the electrical characteristics of a wind turbine at the
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Supplier: Accuris
Description: Wind turbines Part 12-1: Power performance measurements of electricity producing wind turbines
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Supplier: CSA Group
Description: IEC 61400-27-1:2015 specifies dynamic simulation models for generic wind turbine topologies/concepts/configurations on the market. It defines the generic terms and parameters with the purpose of specifying the electrical characteristics of a wind turbine at the
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Supplier: CSA Group
Description: load. While this standard is similar to IEC 61400-1, it does simplify and make significant changes in order to be applicable to small wind turbines. The main changes with respect to the previous edition are as follows: - the title has been modified to better reflect the scope; -
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Supplier: Accuris
Description: Wind Turbines Part 27-1: Electrical simulation models \x97 Wind turbines
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Supplier: LM Wind Power
Description: multi-megawatt LM Wind Power blades for 16 offshore wind farms in the UK, China, Germany, Belgium, Sweden and Denmark. And LM Wind Power continues to work on the next generation of blades longer than 88.4 meters. 4.0 MW - 6.0 MW nominal power output: Blade type Rotor (M) Bolt
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Description: load. While this standard is similar to IEC 61400-1, it does simplify and make significant changes in order to be applicable to small wind turbines. The main changes with respect to the previous edition are as follows: - the title has been modified to better reflect the scope; -
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Supplier: Parent Petroleum Co.
Description: larger image Syncon Wind Turbine Oil is a state-of-the-art, synthetic, extreme-pressure (EP) gear lubricant specifically developed for lubricating the heavily loaded gears and rolling-element bearings in gearboxes of new-generation wind turbines. Syncon Wind
- Kinematic Viscosity (@ 40°C): 34.9 cSt
- Viscosity Index: 154
- Pour Point: -49 F
- Flash Point: 424.4 F
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Supplier: CSA Group
Description: IEC 61400-4:2012(E) is applicable to enclosed speed increasing gearboxes for horizontal axis wind turbine drivetrains with a power rating in excess of 500 kW. This standard applies to wind turbines installed onshore or offshore. It Standard provides guidance on the
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Description: IEC 61400-3:2009 specifies additional requirements for assessment of the external conditions at an offshore wind turbine site and specifies essential design requirements to ensure the engineering integrity of offshore wind turbines. Its purpose is to provide an
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Supplier: CSA Group
Description: IEC 61400-3:2009 specifies additional requirements for assessment of the external conditions at an offshore wind turbine site and specifies essential design requirements to ensure the engineering integrity of offshore wind turbines. Its purpose is to provide an
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Description: IEC 61400-4:2012 is applicable to enclosed speed increasing gearboxes for horizontal axis wind turbine drivetrains with a power rating in excess of 500 kW. This standard applies to wind turbines installed onshore or offshore. It provides guidance on the analysis of the
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Description: IEC 61400-4:2012(E) is applicable to enclosed speed increasing gearboxes for horizontal axis wind turbine drivetrains with a power rating in excess of 500 kW. This standard applies to wind turbines installed onshore or offshore. It Standard provides guidance on the
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Supplier: LM Wind Power
Description: Based on modular technology featuring modular aerodynamics, modular structure and modular manufacturing tooling, LM Wind Power delivers customized blades in mixes of length and structure for 2.5-3.3 MW turbines and extends their life cycle into lower-wind regions. Using flexible
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Supplier: Multi/Cable Corporation
Description: and EMI rejection CHARACTERISTICS: PRODUCT DESCRIPTION: Stranded, soft annealed bare copper conductors Flame retardant 105º C PVC insulation with additional nylon covering for excellent mechanical properties as well as resistance to moisture, oil, chemicals or gasoline Color coded per ICEA Method
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Supplier: UL Standards & Engagement
Description: 1.1 These requirements cover small wind turbine systems (WT) and electrical subassemblies. With respect to this standard, small WT are considered to be wind turbines where a user or service person cannot or is not intended to enter the turbine to
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Description: control techniques for wind turbines, configurations of wind farms, and the issues of integrating wind turbines into power systems. P
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Supplier: Wilcoxon Sensing Technologies
Description: High EMI resistance accelerometer for condition monitoring of wind turbines, 100 mV/g sensitivity, ±5% tolerance, top exit 4 pin M12 connector, M8 integral mounting stud
- Acceleration: 80 g
- Frequency Range: 0.5 to 12,000 Hz
- Operating Temperature: -40 to 248 F
- Sensor Outputs: Acceleration
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Supplier: Wilcoxon Sensing Technologies
Description: High EMI resistance accelerometer for condition monitoring of wind turbines, 100 mV/g sensitivity, ±5% tolerance, top exit 4 pin M12 connector, M6 integral mounting stud
- Acceleration: 80 g
- Frequency Range: 0.5 to 12,000 Hz
- Operating Temperature: -40 to 248 F
- Sensor Outputs: Acceleration
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Supplier: ASME
Description: “This standard is no longer an American National Standard or an ASME-approved standard. It is available for historical reference only.” The primary objective of this Code is to compare the net amount of electrical energy produced by the wind turbine (WT) during a given period of time
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Supplier: ASME Standards and Certification
Description: “This standard is no longer an American National Standard or an ASME-approved standard. It is available for historical reference only.” The primary objective of this Code is to compare the net amount of electrical energy produced by the wind turbine (WT) during a given period of time
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Supplier: JiuJiang Ingiant Technology Co., Ltd.
Description: which effectively guarantees the reliable operation of offshore wind turbines. 3.Precise control of wind turbine pitch systems Case 3:In a large wind farm, each wind turbine's pitch system is equipped with a dedicated pitch slip ring. When the
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Supplier: UL Standards & Engagement
Description: Wind Turbine Generator - Life Time Extension (LTE) UL 4143 1.1 These requirements cover the rules and procedures for the life time extension of wind turbines (LTE). 1.2 These requirements cover the process to obtain risk by relating the severity to
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Supplier: Certex UK
Description: General: Support grip designed to support the cable weight as it hangs vertical or horizontally. Also ideal for taking the strain of connecters and wall sockets. Design primarily for wind turbine use, designs for other applications available on request. Warning: Substantial safety
- Diameter: 0.393701 to 0.5905515 inch
- Application: Crane / Hoist / Lift
- Features: Specialty / Other
- Material: Stainless Steel, Steel - Galvanized
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Supplier: Certex UK
Description: General: Support grip designed to support the cable weight as it hangs vertical or horizontally. Also ideal for taking the strain of connecters and wall sockets. Design primarily for wind turbine use, designs for other applications available on request. Warning: Substantial safety
- Diameter: 0.787402 to 0.9842525 inch
- Application: Crane / Hoist / Lift
- Features: Specialty / Other
- Material: Stainless Steel, Steel - Galvanized
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Supplier: Certex UK
Description: General: Support grip designed to support the cable weight as it hangs vertical or horizontally. Also ideal for taking the strain of connecters and wall sockets. Design primarily for wind turbine use, designs for other applications available on request. Warning: Substantial safety
- Diameter: 0.9842525 to 1.181103 inch
- Application: Crane / Hoist / Lift
- Features: Specialty / Other
- Material: Stainless Steel, Steel - Galvanized
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UNE-EN IEC 61400-8:2025 specifies minimum requirements for the design of wind turbine nacelle-based structures. It focuses on the integrity of structural components within and in the vicinity of the nacelle, including the hub, mainframe, main shaft, structures associated with (read more)
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Wind turbine technology has advanced significantly over the past several decades, resulting in larger wind turbine sizes, more complex manufacturing processes, and increased operational challenges. In addition, harsh operating environments often push main bearing systems, which already (read more)
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Product Name: Ingiant Technology FHS135-25-10120 Precision Wind Turbine Slip Ring, 25 Circuits, 50A High Current, Integrated Encoder Signal Transmission, IP65 Rating, Aluminum Alloy/Carbon Steel Construction, Industrial Electrical Slip Ring 1. Product Overview and Core Advantages (read more)
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Evaluating the ideal conditions for siting onshore or offshore wind farms and their wind turbines. The new UNE-EN IEC 61400-15-1:2025 lays out a framework for assessing site and wind turbine suitability (read more)
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connectivity across the wind farm. Key Advantages for ADLS Operations 1. Unified Device Integration Ensures seamless communication between all operational components, improving situational awareness and system (read more)
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Compact Design & Easy Installation With an outer diameter of only 60mm, the product features a compact structure, easy installation and no complex debugging. It can be directly integrated into wind turbine towers, construction machinery slewing platforms, port (read more)
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Renewable Energy: Used in solar tracking systems and wind turbine pitch control, ensuring efficiency and uptime (read more)
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articulated arms operating at 2-5 Hz cycles. Packaging machinery benefits from their vibration resistance at speeds exceeding 120 cycles per minute. Renewable energy applications utilize their environmental durability in solar tracking and wind turbine systems, while electric vehicle manufacturing (read more)
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Customizable vibration performance, adapting to different equipment vibration environments, ensuring stable operation in high-vibration scenarios (e.g., wind turbines (read more)
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protection, a black-painted steel scroll housing, galvanized rotor and turbine, ball bearings, G2.5 balancing, Class F winding, and thermal protection. Finger guards are available as options. Constant pressure blowers maintain the same pressure at varying airflow conditions. This makes them (read more)
Browse HVAC Fans and Blowers Datasheets for Rosenberg USA
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Steady-state performance of a grid-connected rooftop hybrid wind-photovoltaic power system with battery storage
A 1.5 kW wind turbine including rectifier and guyed lattice tower for $6200.
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Carbon neutral Biggar: calculating the community carbon footprint and renewable energy options for footprint reduction
Similarly, from Table 9, a Swift 1.5 kW wind turbine will produce between 216 and 1,757 kWh annually at location F (Table 6), depending on hub height.
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ARS | Publication request: Evaluation of airfoils for small wind turbines
Interpretive Summary: Field testing of a wind-electric water pumping system on a remote well has shown that a submersible pumping system powered by a 1.5 kW wind turbine was not a good choice for livestock watering in the Great Plains …
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http://calhoun.nps.edu/public/bitstream/handle/10945/39988/93Sep_Pietras.pdf?sequence=1
Typical Power Curve for 1.5 kW Wind Turbine [Ref.51] .
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Economic Investigation of Community-Scale Versus Building Scale Net-Zero Energy
Thus, the $1915/ kW is likely strongly weighted by cost data from 1.5 kW wind turbines , and this figure is used in this report as a constant for the installed wind turbine cost.
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Small Wind Electric Systems: A Vermont Consumer's Guide
The parts of the system include: Bergey 1.5 kW wind turbine , 10-ft (3-m) diameter rotor, 70-ft. (21-m) tower Solarex PV panels, 480 watts 24 DC battery bank, 375 ampere-hours Trace sine wave inverter, 120 AC, 1 …
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Small scale distributed generation system at University of Massachusetts Lowell
As a result of that the new system consisted of 1.5kw wind turbine , 2.5kw PV and 45kWh battery storage.
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Lifetime prediction and sizing of lead-acid batteries for microgeneration storage applications
Combination of the above with a 1.5 kW wind turbine , using ten-minutely windspeed data for an entire year collected at Heriot-Watt University weather station .
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Methodology for optimally sizing the combination of a battery bank and PV array in a wind/PV hybrid system
Numerical information contained in the paper, as well as the analysis of figs. (11,12) allow to summarise rated characteristics of 3 main components (optimized values): 1.5kW ( wind turbine ), 2.4kW (PV module) and 96kWh (battery bank).
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Fuzzy logic modeling of a grid-connected wind/photovoltaic system with battery storage
Contour Map o f the 1.5kW Wind Turbine Regulator Fuzzy Model Output Relating SCR FiringAngle to Battery Voltage and Turbine Current.
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