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2024 | OriginalPaper | Chapter

Dynamic Response of Floating Crane During Lifting Operation: A Parametric Study

Authors : Fahmy Ardhiansyah, Rudi Walujo Prastianto, Murdjito, Ketut Suastika, Setyo Nugroho

Published in: Applied and Computational Mathematics

Publisher: Springer Nature Singapore

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Abstract

The necessity of decommissioning aging offshore structures requires heavy lifting activities using floating cranes. Hence, studies related to the dynamic response of floating cranes are essential to better understand this process and enhance safety and security. The study on offshore heavy lifting in this paper is conducted using the Boundary Element Method (BEM) and Finite Element Method (FEM). These methods serve as alternatives to laboratory testing for studying the dynamic response of floating cranes during offshore heavy lifting operations. Five (5) parameters are developed to assess their sensitivity to the dynamic response, namely suspended load, waves, crane swings, vessel draft, and mooring tension. The results demonstrate that all these parameters significantly influence the dynamic response of the floating crane. The dynamic load factor on the crane hook's static load is calculated to be 1.21, a value in accordance with the recommendations provided by classification societies. These findings indicate that the present methods are feasible for determining the Dynamic Factor under specific conditions.

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Literature
4.
go back to reference DNV.: Technical Standards Committee Guidelines For Marine Lifting & Lowering Operations 0027/ND. (2015) DNV.: Technical Standards Committee Guidelines For Marine Lifting & Lowering Operations 0027/ND. (2015)
6.
go back to reference Murdjito, M., Kurniawan, V., Riyanto, R.D., Prastianto, R.W.: Numerical analysis on the effect of barge motion to jacket lifting process during decommissioning. Int. J. Mar. Eng. Innov. Res. 8(1), 43–51 (2023)CrossRef Murdjito, M., Kurniawan, V., Riyanto, R.D., Prastianto, R.W.: Numerical analysis on the effect of barge motion to jacket lifting process during decommissioning. Int. J. Mar. Eng. Innov. Res. 8(1), 43–51 (2023)CrossRef
7.
go back to reference Firdaus, N., Djatmiko, E.B., Prastianto, R.W., Ismail, M.F.: Motion response analysis of a floating crane barge for the decommissioning of offshore structures. Wave J. Ilm. Teknol. Marit. 15(1), 31–44 (2021)CrossRef Firdaus, N., Djatmiko, E.B., Prastianto, R.W., Ismail, M.F.: Motion response analysis of a floating crane barge for the decommissioning of offshore structures. Wave J. Ilm. Teknol. Marit. 15(1), 31–44 (2021)CrossRef
8.
go back to reference Mahardi, R., Hadiwidodo, Y.S., Prastianto, R.W.: Analisis pengaruh pergerakan barge terhadap pergerakan struktur riser support jacket pada proses lifting tahap instalasi. J Tek ITS 10(2) (2021) Mahardi, R., Hadiwidodo, Y.S., Prastianto, R.W.: Analisis pengaruh pergerakan barge terhadap pergerakan struktur riser support jacket pada proses lifting tahap instalasi. J Tek ITS 10(2) (2021)
12.
14.
go back to reference ASME.: Floating Cranes and Floating Derricks. (2004) ASME.: Floating Cranes and Floating Derricks. (2004)
15.
go back to reference Chakrabarti, S.: Handbook of Offshore Engineering. Elsevier Ltd. (2005) Chakrabarti, S.: Handbook of Offshore Engineering. Elsevier Ltd. (2005)
Metadata
Title
Dynamic Response of Floating Crane During Lifting Operation: A Parametric Study
Authors
Fahmy Ardhiansyah
Rudi Walujo Prastianto
Murdjito
Ketut Suastika
Setyo Nugroho
Copyright Year
2024
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-2136-8_15

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