Title of article :
Installation Depth and Incident Wave Height Effect on Hydrodynamic Performance of a Flap Type Wave Energy Converter: Experimental Analysis
Author/Authors :
Sadripour, G Sea-Based Energy Research group - Babol Noshirvani University, Babol, Iran , Shafaghat, R Sea-Based Energy Research group - Babol Noshirvani University, Babol, Iran , Alizadeh Kharkeshi, B Sea-Based Energy Research group - Babol Noshirvani University, Babol, Iran , Tabassom, R Sea-Based Energy Research group - Babol Noshirvani University, Babol, Iran , Mahmoudi, A. Sea-Based Energy Research group - Babol Noshirvani University, Babol, Iran
Pages :
8
From page :
2283
To page :
2290
Abstract :
The effect of installation depth and height of the incident wave on the hydrodynamic and economic performance of an oscillating wave surge converter (OWSC) wave energy converter is crucial. In this study, an OWSC by considering 1:8 scale has been studied under Caspian Sea wave conditions for 8 water depths from the semi-submerged to fully submerged. The study has been conducted to achieve the best draft ratio and evaluate the systems performance imposed to Caspian waves condition by experimantal method.The results are presented in three parts. The first part studied the converter's flow, power, and sensitivity to the installation depth on a laboratory scale. In the second part, the system results were converted to the main scale 1:8 by using Froude scaling method, and finally, the performance from an economic view evaluated. Results showed that the draft depth has a non-linear effect on the power. System’s power in the dimensionless draft depth of 0.59 is better, and can produce 61 kW. Also, it can pump up to 50 l/s of water. Likewise, suppose the system is used for electricity generation, In that case, it sells $22500 of electricity to the grid annually, and if it is used as a pump, it can supply water to 4710 households on average.
Keywords :
Wave Energy , Oscillating Wave Surge Converter , Water Depth , Annual Energy Production , Caspian Sea
Journal title :
International Journal of Engineering
Serial Year :
2022
Record number :
2731910
Link To Document :
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