A Methodology to Assess the Sloshing Effect of Fluid Storage Tanks on the Global Response of FLNG Vessels

Author:

Hernández-Ménez Diego F.12,Félix-González Iván3,Hernández-Hernández José2,Herrera-May Agustín L.14ORCID

Affiliation:

1. Facultad de Ingeniería de la Construcción y el Hábitat, Universidad Veracruzana, Boca del Rio 94294, Mexico

2. Facultad de Ingeniería Mecánica y Ciencias Navales, Universidad Veracruzana, Boca del Rio 94294, Mexico

3. Exploration and Production Technologies Center, Mexican Petroleum Institute, Boca del Rio 94286, Mexico

4. Micro and Nanotechnology Research Center, Universidad Veracruzana, Boca del Rio 94294, Mexico

Abstract

The sloshing effect of fluid storage tanks of a Floating Liquefied Natural Gas (FLNG) vessel causes variations in its global motion response. These acceleration and motion alterations can affect the safe performance of the FLNG vessels. The classification societies’ rules are employed to standardize the storage tanks’ configuration of FLNG vessels. Herein, we report a methodology to assess the sloshing effect on the global motion response of an FLNG vessel considering four geometrical arrangements of tanks and different fluid filling fractions. This methodology includes the hydrodynamic effect in operating and storm conditions from the Gulf of Mexico using a return period of 100 years. In addition, our methodology considers the influence of the internal fluid of each tank to estimate the accelerations and motions of the vessel. This methodology can be implemented to estimate the stability of an FLNG vessel under different environmental conditions. Thereby, the naval engineers could choose the best geometrical configuration of the storage tanks for safe behavior of a vessel under different operating and extreme environmental conditions.

Funder

Universidad Veracruzana

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference25 articles.

1. The effects of LNG-tank sloshing on the global motions of FLNG system;Hu;Int. J. Nav. Archit. Ocean. Eng.,2017

2. Hernández-Ménez, D.F. (2020). Structural Analysis of Main Deck of an FPSO Vessel Supporting and Offshore Crane (Translation of Spanish). [Master’s Thesis, Universidad Veracruzana]. Available online: https://www.uv.mx/veracruz/miaplicada/files/2021/07/Tesis_Diego-Hernandez-Menez.pdf.

3. Hernández-Ménez, D.F. (2021). Sloshing Effect Analysis of Global Response of an FLNG Vessel with Different Geometric Configurations of Tanks (Translation of Spanish). [Bachelor’s Thesis, Universidad Veracruzana].

4. Outlier analysis of sloshing impact loads on liquid ship cargo;Kim;Proc. Inst. Mech. Eng. M J. Eng. Marit. Environ.,2022

5. A hybrid method for ship response coupled with sloshing in partially filled tanks;Lyu;Marine Struct.,2019

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