A paradigm shift in the quantification of wave energy attenuation due to saltmarshes based on their standing biomass. [PDF]
Maza M, Lara JL, Losada IJ.
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A pendulum-based nanogenerator for high-entropy wave energy harvesting. [PDF]
Zhao T +9 more
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Global 3-hourly wind-wave and swell data for wave climate and wave energy resource research from 1950 to 2100. [PDF]
Jiang X, Xie B, Bao Y, Song Z.
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Dynamic behaviour and power performance of a Septon semisubmersible floating wind turbine integrated with wave energy converters. [PDF]
Sebastian B, Karmakar D, Rao M.
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Research on Wave Energy Harvesting Technology of Annular Triboelectric Nanogenerator Based on Multi-Electrode Structure. [PDF]
Wang CJ, Meng F, Fu Q, Fan CH, Cui L.
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Research on an innovative magnetic helix hybrid excitation rotary generator with remarkable power density and efficiency for wave energy conversion. [PDF]
Liu Y, Yu H, Zhang Q.
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Nanofiber-Enhanced "Lucky-Bag" Triboelectric Nanogenerator for Efficient Wave Energy Harvesting by Soft-Contact Structure. [PDF]
Luo Y +6 more
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From Wave Energy to Electricity: Functional Design and Performance Analysis of Triboelectric Nanogenerators. [PDF]
Lou Y, Li M, Yu A, Zhai J, Wang ZL.
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Ambient Electromagnetic Wave Energy Harvesting Using Human Body Antenna for Wearable Sensors. [PDF]
Muramatsu D, Amano K.
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Linking the long-term variability in global wave energy to swell climate and redefining suitable coasts for energy exploitation. [PDF]
Kamranzad B, Amarouche K, Akpinar A.
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