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Product Details:
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| Wind Speed Range: | 0m/s ~ 50m/s | Measurementfrequency: | 1 Hz To 10 Hz |
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| Powerconsumption: | 50 W | Communication Port: | Profibus DP,etc. |
| Data Transfer Rate: | Up To 1 Gb/s | Measurement Layer: | 10 |
| Working Altitude: | ≤3500m | Dataoutputformat: | ASCII, Binary |
| Highlight: | 24V DC wind lidar system,harsh environment wind detection system,laser machine wind sensing system |
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The Molas NL series is a nacelle wind lidar system independently developed to cater to the intelligent application requirements of wind power customers. This cutting-edge device is a laser remote sensing instrument mounted on top of the wind turbine nacelle. Utilizing a coherent detection system and based on the principle of laser Doppler frequency shift, it enables precise measurement of vector wind fields at distances ranging from 50 meters to 200 meters, 400 meters, 500 meters, and even between 70 meters to 750 meters ahead of the turbine blades.
The Molas NL nacelle wind lidar system is capable of measuring and recording wind field data in front of wind turbines across various ranges, including 50m-200m, 400m, 500m, and 70m-750m. It integrates seamlessly with the main control system of wind turbines, facilitating feedforward control strategies. This integration helps optimize turbine load management and enhances power generation efficiency.
Moreover, this advanced lidar system supports a wide array of automated operational scenarios. These applications include yaw correction, power curve testing, wake analysis, and intelligent field group control, making it a versatile tool for improving the performance and operational intelligence of wind farms.
Blade Load Analysis involves examining the forces and stresses acting on wind turbine blades during operation. Understanding these loads is essential for designing durable and efficient blades that can withstand harsh environmental conditions.
The Power Curve Test is a vital procedure used to assess the performance of a wind turbine. By measuring the relationship between wind speed and generated power, this test helps in verifying the turbine's efficiency and operational capability.
Wake Analysis studies the impact of the airflow disturbance created by one wind turbine on downstream turbines. This analysis is crucial for optimizing turbine placement in a wind farm to maximize overall energy production.
Yaw Correction refers to the adjustment of the turbine’s orientation to face the wind direction accurately. Proper yaw correction ensures that the blades capture the maximum wind energy, improving the turbine’s efficiency.
Intelligent Farm Group Control encompasses advanced control strategies that coordinate multiple turbines within a wind farm. By intelligently managing turbine operations collectively, this approach aims to enhance the farm’s performance and reduce mechanical wear.
The MOVELASER Nacelle Wind Lidar, certified by DNV GL, is a cutting-edge Gale Computing Laser System designed for precise and reliable wind measurement across various application occasions and scenarios. This Airflow Locomotion Measurement Machine is ideal for use in wind energy production, meteorological research, and environmental monitoring, providing accurate wind speed data within a range of 0m/s to 50m/s. Its advanced Measurement frequency of 1 Hz to 10 Hz ensures real-time monitoring, making it indispensable for wind turbine nacelle integration and performance optimization.
In the renewable energy sector, the MOVELASER Nacelle Wind Lidar is extensively used for wind resource assessment and turbine control. Installed directly on turbine nacelles, this Meteorological Wind Detecting System enables operators to measure wind conditions at different altitudes up to 3500 meters, facilitating improved energy yield and reduced mechanical stress. Its low power consumption of 50 W and robust communication ports such as Profibus DP make it highly efficient and compatible with existing turbine control systems.
Beyond wind energy, this system proves essential in meteorological stations and research facilities for atmospheric studies and weather forecasting. The ability to deliver high-frequency wind data empowers meteorologists to analyze airflow patterns and predict weather changes more accurately. This versatility also extends to offshore and onshore wind farms, where the MOVELASER Nacelle Wind Lidar can withstand harsh environmental conditions and deliver consistent performance.
With a minimum order quantity of just one set, packaged securely in an Air Box for safe transportation, and a supply capability of 200 sets per month, MOVELASER ensures timely delivery within 1-2 months. Payment terms are flexible, including L/C, D/A, D/P, and T/T options, catering to diverse customer needs. Priced competitively at 5W$+ (price consultation available through customer service), this Gale Computing Laser System represents a smart investment for industries requiring accurate and dependable wind measurement solutions.
In summary, the MOVELASER Nacelle Wind Lidar excels in applications such as wind turbine performance enhancement, meteorological data acquisition, and environmental monitoring. Its certification by DNV GL guarantees quality and reliability, making it a top choice for professionals seeking advanced Airflow Locomotion Measurement Machines and Meteorological Wind Detecting Systems.
Our Wind Lidar System is supported by a dedicated technical support team committed to ensuring optimal performance and reliability. We offer comprehensive services including installation guidance, calibration assistance, routine maintenance, and troubleshooting. Our experts provide detailed documentation and user manuals to help you maximize the system's capabilities. In addition, software updates and system upgrades are available to keep your Wind Lidar System operating with the latest features and improvements. For specialized needs, customized training sessions and on-site support can be arranged to enhance your operational efficiency and data accuracy.
Contact Person: Miss. ivyyao
Tel: +86 13072523225
Fax: 86-025-86800073