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larger decrease » marked decrease (Expand Search)
less decrease » we decrease (Expand Search), levels decreased (Expand Search), largest decrease (Expand Search)
teer decrease » greater decrease (Expand Search)
larger decrease » marked decrease (Expand Search)
less decrease » we decrease (Expand Search), levels decreased (Expand Search), largest decrease (Expand Search)
teer decrease » greater decrease (Expand Search)
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1321
Amplitude for A/L = 0.29.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1322
Top view of the experimental setup.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1323
Amplitude for A/L = 0.338.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1324
Parameters of energy harvesting.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1325
Graph for Max Amplitude/Length at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1326
Amplitude for A/L = 0.02.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1327
Graph for maximum Frequency at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1328
Graph for maximum Power at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1329
Amplitude for A/L = 0.03.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1330
Summary of experimentation results.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1331
Piezoelectric eel.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1332
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1333
Loading mode.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1334
Model and meshes.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1335
Shearing forces in the tension zone.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1336
Pile foundation section.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1337
Shearing force in the pressure zone.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1338
Strain-stress maps of vertical pile foundation.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1339
Displacement-inclination variation graph.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”
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1340
Soil modeling and mechanical parameters.
Published 2025“…Furthermore, parametric studies reveal that the pile base displacement exhibits a non-linear trend of initially decreasing and then increasing with larger inclination angles of the inclined piles. …”