Search alternatives:
point decrease » point increase (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search), we decrease (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
6 point » 6 points (Expand Search), _ point (Expand Search), 5 point (Expand Search)
point decrease » point increase (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search), we decrease (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
6 point » 6 points (Expand Search), _ point (Expand Search), 5 point (Expand Search)
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1141
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1144
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1147
Top view of the experimental setup.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1148
Parameters of energy harvesting.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1149
Graph for Max Amplitude/Length at G<sub>y</sub> = 0.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1150
Graph for maximum Frequency at G<sub>y</sub> = 0.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1151
Graph for maximum Power at G<sub>y</sub> = 0.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1152
Summary of experimentation results.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1153
Piezoelectric eel.
Published 2025“…The smoothest cylinder (K<sub>s</sub>/D = ) produced the highest power (52.325 µW), while the roughest (K<sub>s</sub>/D = ) resulted in a 6.26% decrease in power (36.4 µW), along with reductions of 4.5% in flapping frequency and 20% in amplitude. …”
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1154
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1155
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1156
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1157
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1158
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1159
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1160