Buku The Offshore Renewable Energy Series: Fluid-Structure Interaction on a Tidal Energy Converter

Rp 54.000

 
Penulis Dr. Nu Rhahida Arini, S.T., M.T.
Institusi
Kategori Buku Referensi
Bidang Ilmu Teknik
ISBN
Ukuran 15.5×23 cm
Halaman x, 40 hlm
Ketersediaan Pesan Dulu
Tahun 2023
Pengiriman

Dikirim dari Sleman, Yogyakarta

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Sinopsis Buku The Offshore Renewable Energy Series: Fluid-Structure Interaction on a Tidal Energy Converter

Buku The Offshore Renewable Energy Series: Fluid-Structure Interaction on a Tidal Energy Converter

One of promising renewable energy sources which can be potentially extracted is offshore renewable energy. It is harvested by means of offshore renewable energy converters. Its resources include a wide range of possibilities, but the tide is one of the most in-demand energy. Tidal energy contains a lot of kinetic energy, which can be turned into other forms of energy like electricity. The tidal energy extraction needs a tidal energy converter to convert tidal kinetic energy to electricity. Many tidal energy converter models have been developed to extract offshore energy efficiently using a high-performance converter. A vertical axis tidal turbine is one type of tidal energy converter that is rapidly expanding. The turbine design is critical because it must be able to extract mechanical energy efficiently while also operating at high performance.

One problem that can be found in many tidal turbine devices is vibrations phenomena, a form of interactions between sea water and a turbine structure. The vibrations induce other problems from the singing propeller, fatigue failure, structure stability and lock-in phenomena. When vibrations are not minimized, the turbines suffer from all effects, which are found to be extremely severe in turbine operation. For example, the vibration reaches the turbine’s natural frequency and cause to synchronize to form strong vibrations. This harms turbine structure therefore should be reduced. The method to evaluate the vibration is called the fluid-structure interaction (FSI). This book covers the FSI to minimize the vibrations to reduce the impact of vibrations on the turbines. The increase in turbine performance indicates the reduction.

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