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Motion Analysis of SPAR Type Floating Offshore Wind Turbine in Parking Condition at Natuna Sea
Rudi W. Prastianto (a), Fadel R. Ramadhan (a), Murdjito (a)

a) Departement of Ocean Engeering, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia


Abstract

In Indonesia, one of the regions that has good potential for Floating Offshore Wind Turbine (FOWT) installations is the Natuna Sea which has a fairly good average wind speed in the range of 7.0 - 11.0 m/s. In addition, the Natuna Sea has water depth of around 80-100 m with relatively mild wave height. This condition is a suitable environment for the installation of the FOWT. This paper examined the analysis of the global motion of SPAR type FOWT structure and its mooring system through numerical modeling by using open source software FAST. The Spar structure was successful applied in the offshore oil and gas industries which has a special feature of deep-draft so that its motion characteristics are very good/stable because the Spar is not too affected by wind, waves or ocean currents, compared to other floating structure types. The Spar use is even capable of up to a depth of 10,000 ft (= 3,048 m). The analysis was carried out for parking condition, as a basic condition, by varying the direction of environmental loads (waves and winds), namely 0 degree (perpendicular in front of the turbine), 45 degrees, and 90 degrees (the turbine side direction) and wind speed. With the scope of such analysis, it could be properly examined the global motion modes (heave, roll and pitch) at suitable mooring system. This situation will prevent the Spar to structurally collapse and in turn its motion will not decrease the efficiency of the wind turbine itself.

Keywords: Floating Offshore Wind Turbine; Motion Analysis; Spar Type; Natuna Sea

Topic: Ocean Engineering and Technology

Link: https://ifory.id/abstract/WcR3QAUX8tgJ

Conference: The 2nd International Conference on Maritime Sciences and Technology (MSAT 2019)

Plain Format | Corresponding Author (FADEL RAHMAT RAMADHAN)

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