Towards an Optimal Wind Energy Harvest for EV Charging Station: Design of the Data Acquisition System and Aerodynamic Modeling of HVAWT Blade

Author(s):  
Uchechukwu Okorie ◽  
Jonathan Ukaegbu ◽  
Samuel Ajuwon ◽  
Olugbenga Noah ◽  
Adeyinka Oluwo ◽  
...  
2018 ◽  
Vol 47 (2) ◽  
pp. 124-130 ◽  
Author(s):  
Andras Nagy ◽  
Ingo Jahn

Today renewable energies, particularly wind energy are important to meet 24 hour energy demands while keeping car­bon emissions low. As the cost of renewable energies are high, improving their efficiency is a key factor to reduce energy prices. High quality experimental data is essential to develop deeper understanding of the existing systems and to improve their efficiency.This paper introduces an unmanned airborne data acquisition system that can measure properties around wind-turbines to pro­vide new insight into aerodynamic performance and loss mech­anisms and to provide validation data for wind-turbine design methods. The described system is a flexible and portable platform for collecting high quality data from existing full-scale wind-tur­bine installations. This allows experiments to be conducted with­out scaling and with real-world boundary conditions.The system consists of two major parts: the unmanned flying platform (UAV) and the data acquisition system (DAQ). For the UAV a commercially available unit is selected, which has the ability to fly a route autonomously with sufficient preci­sion, the ability to hover, and sufficient load capacity to carry the DAQ system. The DAQ system in contrast, is developed in-house to achieve a high quality data collection capability and to increase flexibility.


2021 ◽  
Vol 10 (2) ◽  
pp. 305-317
Author(s):  
Mohd Najib Abdul Ghani Yolhamid ◽  
Mohd Norsyarizad Razali ◽  
M.N. Azzeri ◽  
Mohd Shukri Mohd Yusop ◽  
Ahmad Mujahid Ahmad Zaidi ◽  
...  

The energy ship is a concept for offshore wind energy capture which has received very little attention until today. To this date, there had not been yet an experimental proof of concept. In order to tackle this issue, an experimental platform and data acquisition system has been developed. A 5.5m long sailing catamaran served as a platform equipped with a 240mm diameter water turbine. The energy ship platform has been tested several times in the actual river to investigate the workability of the platform and data acquisition system. Results show that energy ship platform can produced 500W electric power for a true wind speed of 10 knots.


2013 ◽  
Vol 33 (2) ◽  
pp. 567-570
Author(s):  
Zeping YANG ◽  
Deqiang LIU ◽  
Qian WANG ◽  
Qiangming XIANG

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