Material Identification Method using Underwater Laser Energy Analysis for Offshore Wind Power Windmill Health Detection
Laser material recognition technology and intelligent color compensation lighting system, with AUV to realize the function of underwater rust detection and image color restoration, real-time acquisition of rust information through spectral analysis and display of true rust color on the image, so that the algorithm can be accurate Determine the health of the cylinder. The vehicle will establish the health information of the wind turbine to help the inspector make the best maintenance strategy and maintain the power generation efficiency of the wind turbine in the best condition.
Part of the laser spectrum is absorbed through the rusted area, and the spectrum is unevenly distributed. The degree of rust can be distinguished after analyzing the spectrum. The multi-color LED light source is used for taking pictures to give the required detection brightness and color compensation, and the color difference is quantified to determine the color reproduction degree, than the compensation power is adjusted. The establishment of a data and image detection system can effectively grasp the health status of the fan and formulate a complete maintenance strategy.
In offshore wind farms, the integration of laser material identification technology and color compensation lighting technology can effectively check and manage the corrosion health of the entire wind farm. This technology can be used in underwater biological identification, object exploration and other activities in the future to enhance the ability to recognize underwater environments to obtain the original colors of underwater objects, bring greater benefits in the application of marine engineering, and improve the green energy industry The added value.
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Easy-installed Fingertip Energy Stethoscope (Power Tab) enables real time energy system saving solution
1.Heat pump combined with desiccant for dehumidification & 2.Smart defrost control method & 3.Design of AIoT EMCS communication system & 4.System and Method for a Non-Intrusive Refrigerant Leakage Detection and Adaptive Method for Threshold Thereof
Engineering Technology Development for Bottom Fixed Underwater Structures of Offshore Wind Turbines under Extreme Environments
High practicality surface modification technology for enhancing hydrogen production via water electrolysis and solid-state hydrogen storage efficiency
Technology maturity:Prototype
Exhibiting purpose:Product promotion、Display of scientific results
Trading preferences:Technical license/cooperation、Negotiate by self
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