TY - JOUR
T1 - Study on fast prediction method of hydrodynamic load of floating horizontal axis tidal current turbine with pitching motion under free surface
AU - Wang, Shuqi
AU - Chen, Siyuan
AU - Li, Chenyin
AU - Guo, Wei
AU - Jing, Fengmei
AU - Wang, Kunpeng
N1 - Publisher Copyright:
© 2023 Elsevier Ltd
PY - 2023/7/1
Y1 - 2023/7/1
N2 - The floating horizontal-axis tidal current turbine (HATCT) moves with the floating carrier while rotating, resulting in a change in its relative inflow velocity at any time. If the rotating speed of the HATCT is fixed, the HATCT cannot work at the optimum tip speed ratio, resulting in the failure to achieve the optimum power generation efficiency. Therefore, this paper proposes a control strategy for the rotating speed of the HATCT, and obtains the hydrodynamic loads of the HATCT with variable speed rotation and pitching motion under free surface conditions based on the CFD method. Compared with the hydrodynamic load of the HATCT under the same situation but with fixed speed control, the variable speed control can effectively improve the power coefficient of the HATCT, but the load fluctuation in terms of the inflow direction load, power, and pitch moment coefficients are more significant than those with fixed speed control. On this basis, according to the variation law of the damping coefficient with pitch period, pitch amplitude, and tip speed ratio, the hydrodynamic load prediction method of the HATCT with pitching motion is established. The validity of this prediction method is verified by comparing the results with those of CFD calculation.
AB - The floating horizontal-axis tidal current turbine (HATCT) moves with the floating carrier while rotating, resulting in a change in its relative inflow velocity at any time. If the rotating speed of the HATCT is fixed, the HATCT cannot work at the optimum tip speed ratio, resulting in the failure to achieve the optimum power generation efficiency. Therefore, this paper proposes a control strategy for the rotating speed of the HATCT, and obtains the hydrodynamic loads of the HATCT with variable speed rotation and pitching motion under free surface conditions based on the CFD method. Compared with the hydrodynamic load of the HATCT under the same situation but with fixed speed control, the variable speed control can effectively improve the power coefficient of the HATCT, but the load fluctuation in terms of the inflow direction load, power, and pitch moment coefficients are more significant than those with fixed speed control. On this basis, according to the variation law of the damping coefficient with pitch period, pitch amplitude, and tip speed ratio, the hydrodynamic load prediction method of the HATCT with pitching motion is established. The validity of this prediction method is verified by comparing the results with those of CFD calculation.
KW - Damping coefficient
KW - Horizontal-axis tidal current turbine
KW - Hydrodynamic loads
KW - Prediction method
KW - Rotation speed control
UR - http://www.scopus.com/inward/record.url?scp=85152696117&partnerID=8YFLogxK
U2 - 10.1016/j.oceaneng.2023.114589
DO - 10.1016/j.oceaneng.2023.114589
M3 - Article
AN - SCOPUS:85152696117
SN - 0029-8018
VL - 279
JO - Ocean Engineering
JF - Ocean Engineering
M1 - 114589
ER -