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- W4367459122 abstract "Water wave energy is one important source of renewable energy worth further exploitation to help reduce global carbon emission. To aid in such exploitation, we have designed and constructed a water wave energy harvester, and tested it in the towing tank at NCKU. The wave energy harvester has three major systems: a mechanical mechanism driven by wave motion through an oscillating buoy, a generator system converting the mechanical energy of the buoy into electric energy, and an energy storage system. Meanwhile, to optimize the performance of mechatronic components and energy storage electronics of our wave energy harvester to be tested in the towing tank, a small-scale apparatus also is built, which includes an actuator system and an energy harvesting system that mimics the full-scale wave energy harvester. Through dynamical similarity analysis, nearshore wave data collected on the west coast of Central Taiwan are used to determine the system parameters, such that the tested system can be thought of as a 1/6 model of a prototype that hopefully can be built and deployed nearshore. Results of the towing tank tests indicate that, for water waves of period 1.4 s and height 10 cm, and when the moment of inertia of the harvester is 6.14 x 10 - 3 kg-m 2 , a maximum energy conversion efficiency of 14.2% can be achieved. This preliminary study demonstrates the feasibility of our wave energy harvester design, and helps identify how its efficiency can be further improved." @default.
- W4367459122 created "2023-05-01" @default.
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- W4367459122 date "2023-01-01" @default.
- W4367459122 modified "2023-10-01" @default.
- W4367459122 title "Realization and Performance Testing of a Water Wave Energy Harvester" @default.
- W4367459122 doi "https://doi.org/10.12792/iciae2023.051" @default.
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