Optimization of Ferry Ship Design on the Bombana - Tanjung Pising - Baubau Route

Authors

  • Dian Andalan Pertiwi Institut Dharma Bharata Grup

DOI:

https://doi.org/10.58812/wsis.v1i12.955

Keywords:

Optimization, Ferry, Bombana - Tanjung Pising – Baubau Route

Abstract

The objective of this research is to get the optimal ship dimension for the Bombana - Tanjung Pising - Baubau crossing route. This research uses a linear programming optimization method. By identifying problems and mismatches of ships operating with the main objective of ferry transportation, and determining the objective function of optimization. Then determine the aspects of ship design that are adjusted to the characteristics of the ferry based on optimization constraints, namely demand conditions, oceanography and infrastructure. The direction of optimization is more emphasized on increasing the speed and effectiveness of greater loading capacity on passenger and vehicle. The results have been obtained in the form of the optimal principal dimension of the ship for the Bombana - Tanjung Pising - Baubau crossing route with effective ship speed

References

M. Y. Jinca, “Sea Transportation of Indonesia (System Analysis and Case Study Brillian International.” Surabaya, 2011.

T. Clarke, “Assistance with the implementation of an under keel clearance system for Torres Strait,” Rep. Prep. Aust. Marit. Saf. Auth. (AMSA), Client Ref. AMSA, no. 790/36186, 2007.

V. Ganesan, “Global optimization of the nonconvex containership design problem using the reformulation-linearization technique.” Virginia Tech, 2001.

H. Gudenschwager, “Optimierungscompiler und Formberechnungsverfahren: Entwicklung und Anwendung im Vorentwurf von RO/RO-Schiffen,” 1988.

M. M. Maru, “Japan International Cooperation Agency (JICA).” STBA LIA, 2008.

M. Kanerva, “The Future of Ship Design,” Deltamarin Limited. MPI Group, United Kingdom, 2000.

N. D. Kumar, “Optimization Method: Classical and Advanced Techniques for Optimization,” Indian Inst. Sience. Handbook. India, 2007.

O. Levander, “Energy efficient cruise and ferry concept,” Compend. Mar. Eng. Sh. Offshore, no. 1, pp. 10–13, 2010.

R. S. Munro, “Element Of Ship Design,” Mar. Media Manag. London, 1978.

H. M. Nasution, “Transportation Management, Ghalia Indonesia.” Jakarta, 1996.

A. D. Papanikolaou, “Holistic Design and Optimisation Of High-Speed Marine Vehicles,” in The 9th HMSV Symposium, IX HSMV, 2011, pp. 25–27.

H. Schneekluth and V. Bertram, Ship design for efficiency and economy, vol. 218. Butterworth-Heinemann Oxford, 1998.

E. S. Ravn, Probabilistic damage stability of Ro-Ro ships. Technical University of Denmark, 2003.

K. Sugata, Y. Iwamoto, Y. Ikeda, and Y. Nihei, “Reduction of wind force acting on Non Ballast Ship,” in Proceedings of the 5th Asia Pacific Workshop on Marine Hydrodynamics-APHydro2010, Osaka, Japan, 2010, pp. 1–4.

M. Schulze, “Linear Programming for Optimization. Perceptive Scientific Instruments,” Inc. Wilmington, United State, 1998.

D. Vassalos, L. Guarin, A. Jasionowski, and Y. Zheng, “A risk-based first-principles approach to assessing green seas loading on the hatch covers of bulk carriers in extreme weather conditions,” Mar. Struct., vol. 16, no. 8, pp. 659–685, 2003.

D. Watson, “Practical Ship Design: Elsevier,” 1998.

G. M. Younis, M. M. Gaafary, H. El-Kilani, and M. M. Moustafa, “Techno-economical optimization for river Nile container ships,” Brodogr. An Int. J. Nav. Archit. Ocean Eng. Res. Dev., vol. 62, no. 4, pp. 383–395, 2011.

S. Cwik and C. Singh, “Role of Inclusiveness of Learning Environment in Predicting Students’ Outcomes in Courses in Which Women Are Not Underrepresented.,” J. High. Educ. Theory Pract., vol. 22, no. 17, 2022.

D. Delač and D. Purković, “The Relationship between Extracurricular Activities and Student Achievement in the Affective Domain: The Case of a Vocational Electrical Engineering School,” in 2023 46th MIPRO ICT and Electronics Convention (MIPRO), IEEE, 2023, pp. 1590–1594.

T. Ratnam, “Exploring the notion of inclusivity as facilitating students’ ontological engagement for personally relevant learning,” Eur. J. Educ., vol. 58, no. 2, pp. 277–288, 2023.

N. Ribeiro, C. Malafaia, T. Neves, and I. Menezes, “The impact of extracurricular activities on university students’ academic success and employability,” Eur. J. High. Educ., pp. 1–21, 2023.

S. D. Pol and A. Prakash, “Engagement in Structured Extracurricular Activities: A Preventive Measure for Technology Addiction in Adolescents,” Sci. Insights Educ. Front., vol. 16, no. 2, pp. 2537–2563, 2023.

S. T. Wachsmuth, T. J. Lewis, and N. A. Gage, “Exploring Extracurricular Activity Participation, School Engagement, and Social Competence for Students With Emotional and Behavioral Disorders,” Behav. Disord., vol. 48, no. 4, pp. 255–268, 2023.

M. Costa, I. Cruz, F. Martins, L. Veríssimo, and I. Castro, “Extracurricular music activities in school and school engagement: students’ and teachers’ perspectives,” Qual. Res. Educ., vol. 12, no. 1, pp. 52–80, 2023.

J. E. Dahlvig and S. Beers, “The status of student affairs divisions within the CCCU,” Christ. High. Educ., vol. 17, no. 4, pp. 215–239, 2018.

M. J. Sá, “Student Academic and Social Engagement in the Life of the Academy—A Lever for Retention and Persistence in Higher Education,” Educ. Sci., vol. 13, no. 3, p. 269, 2023.

S. Moonsamy, “Inclusive classrooms as thinking spaces for teachers and students,” in The Routledge Handbook of Inclusive Education for Teacher Educators, Routledge India, 2023, pp. 206–216.

S. Leksuwankun, Y. Dangprapai, and D. Wangsaturaka, “Student engagement in organising extracurricular activities: Does it matter to academic achievement?,” Med. Teach., vol. 45, no. 3, pp. 272–278, 2023.

J. Zajda, “Inclusive Schooling and Motivational Strategies for Improving Academic Achievement,” in Globalisation and Inclusive Schooling: Engaging Motivational Environments, Springer, 2023, pp. 35–54.

I. M. Karkouti, “Deconstructing predominantly White cultures: Creating inclusive learning environments in the United States,” 2023.

R. M. Carini, G. D. Kuh, and S. P. Klein, “Student engagement and student learning: Testing the linkages,” Res. High. Educ., vol. 47, pp. 1–32, 2006.

N. Muhammad, A. Siddique, S. Jabeen, and M. S. AKhtar, “Academic Motivation and Engagement: A Correlational Study of Students’ Perspective at Secondary School Level,” J. Soc. Sci. Rev., vol. 3, no. 2, pp. 852–863, 2023.

J. Alonso-Tapia, E. Merino-Tejedor, and J. A. Huertas, “Academic engagement: assessment, conditions, and effects—a study in higher education from the perspective of the person-situation interaction,” Eur. J. Psychol. Educ., vol. 38, no. 2, pp. 631–655, 2023.

J. Chukwunike and C. Cassia Anwar, “An Enhanced Student Engagement and Academic Performance Predictive System”.

C. Lutz, A. Bouwens, and M. M. van Goch, “College classroom diversity as a source of scholarly learning for teachers,” Coll. Teach., pp. 1–9, 2023.

E. K. Leifler, “Towards Equity and Inclusion Excellence Using Diverse Interventions,” in Building Inclusive Education in K-12 Classrooms and Higher Education: Theories and Principles, IGI Global, 2023, pp. 59–79.

A. Singh and P. Pallai, “Paving the Way Ahead: A Systematic Literature Analysis of Inclusive Teaching Practices in Inclusive Classrooms,” J. Educ. Cult. Psychol. Stud. (ECPS Journal), no. 27, pp. 157–171, 2023.

V. P. Zeleeva, S. S. Bykova, and S. Varbanova, “Psychological and Pedagogical Support for Students’ Adaptation to Learning Activity in High Science School.,” Int. J. Environ. Sci. Educ., vol. 11, no. 3, pp. 151–161, 2016.

L. Silva, A. Mendes, A. Gomes, and G. Fortes, “Fostering regulatory processes using computational scaffolding,” Int. J. Comput. Collab. Learn., vol. 18, no. 1, pp. 67–100, 2023.

N. Borozinets, Y. Prilepko, O. Artemenko, O. Demidenko, and E. Em, “Professional training of undergraduate of education to tutoring support of disabled children in the general educational institutions,” J. Pharm. Sci. Res., vol. 10, no. 9, pp. 2396–2400, 2018.

R. P. Sumague, “Influence of involvement in clubs and organizations on the leadership development of students,” World J. Adv. Res. Rev., vol. 17, no. 2, pp. 404–407, 2023.

S. Jošic, B. J. Pavešic, N. Gutvajn, and M. Rožman, “Scaffolding the learning in rural and urban schools: Similarities and differences,” Dinaric Perspect. TIMSS 2019, vol. 213, 2022.

P. Mulyadi and K. D. H. Saraswati, “Social Support and Students’ Academic Engagement,” in The 2nd Tarumanagara International Conference on the Applications of Social Sciences and Humanities (TICASH 2020), Atlantis Press, 2020, pp. 443–450.

L. E. Voisin, C. Phillips, and V. M. Afonso, “Academic-support environment impacts learner affect in higher education,” Student Success, vol. 14, no. 1, pp. 47–59, 2023.

K. Berger and A. S. Kaplan, “Implementation of a grassroots advocacy movement through state and local collaboration,” Am. J. Heal. Pharm., vol. 76, no. 11, pp. 774–778, 2019.

X. Pan and Y. Yao, “Enhancing Chinese students’ academic engagement: the effect of teacher support and teacher–student rapport,” Front. Psychol., vol. 14, p. 1188507, 2023.

T. Barnett, M. Tollit, S. Ratnapalan, S. M. Sawyer, and M. Kelaher, “Education support services for improving school engagement and academic performance of children and adolescents with a chronic health condition,” Cochrane Database Syst. Rev., no. 2, 2023.

J. M. Mauti, T. O. Pacho, and B. O. Nyatuka, “Effect of Students’ Inclusivity on Efficacy of 100% Transition in Public Secondary Schools in Kisii County, Kenya,” East African J. Educ. Stud., vol. 6, no. 1, pp. 195–209, 2023.

C. Breyer and B. Gasteiger-Klicpera, “The relative significance of contextual, process and individual factors in the impact of learning and support assistants on the inclusion of students with SEN,” Int. J. Incl. Educ., pp. 1–17, 2023.

M. Ulimas, “THE EFFECT OF STUDENT ACTIVITY UNITS AND ORGANIZATIONAL ACTIVITIES ON STUDENT ACADEMIC VALUE,” 2022.

P. Haber‐Curran and D. E. Pierre, “Student involvement as a catalyst for leadership identity development,” New Dir. Student Leadersh., vol. 2023, no. 178, pp. 75–86, 2023.

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Published

2023-12-31

How to Cite

Pertiwi, D. A. (2023). Optimization of Ferry Ship Design on the Bombana - Tanjung Pising - Baubau Route. West Science Interdisciplinary Studies, 1(12), 1583–1596. https://doi.org/10.58812/wsis.v1i12.955