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Conceptual design and performance evaluation of COVID-19 vessel for public health service in Indonesia’s remote Island

作     者:Tuswan Tuswan Saefulloh Misbahudin Adi Widianto Mahendra Guna Satriananta Rayhan Satria Dwinata Abdi Ismail Muhammad Luqman Hakim Good Rindo Aditya Rio Prabowo Teguh Putranto 

作者机构:Department of Naval Architecture Institut Teknologi Sepuluh Nopember Surabaya Indonesia Department of Naval Architecture Universitas Diponegoro Semarang Indonesia Ship Machinery Study Programme Faculty of Vocational Studies Indonesia Defense University Belu Indonesia Department of Systems and Naval Mechatronic Engineering. National Cheng Kung University Taiwan Department of Mechanical Engineering Universitas Sebelas Maret Indonesia Department of Civil Engineering and Architecture Tallinn University of Technology Tallinn 19086 Estonia 

出 版 物:《AIP Conference Proceedings》 

年 卷 期:2023年第2674卷第1期

学科分类:07[理学] 0702[理学-物理学] 

摘      要:The development of medical facilities is crucial in Indonesia’s remote island since COVID-19-19 disease collapses the hospital system. This work is intended to develop the COVID-19 vessel as a medical support system with a dynamic positioning system to give medical health care for Indonesia’s remote island. The COVID-19 vessel is named KM. LOTUS is arranged similarly with Type B medical facility standards. Conceptual design and performance calculation comprised weight calculation, medical facility arrangement, resistance and powering test, seakeeping performances are evaluated. The ship is equipped with an ambulance boat to increase mobility capabilities for smaller waters, such as narrow straits and estuaries. It is placed behind the ship, uses an autonomous system to climb up to the top of the deck. The resistance test has a value of 66.6 kN and a power of 383 HP at a ship speed of 12.22 knots. The seakeeping analysis was carried out using the strip theory method by simulating a ship speed of 12.22 knots representing Maluku sea condition. It can be found that different incoming waves will produce different oscillatory movements of heave, pitch, and roll.

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