Disaster Management in the Palm Oil Industry Using Industrial Engineering Methods with Monte Carlo Simulation and Survival Analysis

Authors

  • Suksmanatyo Adhi Tama Institute of Technology Surabaya, Indonesia
  • Brian Fitri Wahyudi Adhi Tama Institute of Technology Surabaya, Indonesia
  • Muhammad Taufiq Hidayat Adhi Tama Institute of Technology Surabaya, Indonesia
  • Suheriyanto Adhi Tama Institute of Technology Surabaya, Indonesia
  • Yulianto Adhi Tama Institute of Technology Surabaya, Indonesia
  • M. Ferdaus Noor Aulady Adhi Tama Institute of Technology Surabaya, Indonesia

DOI:

https://doi.org/10.52435/jaiit.v7i2.721

Keywords:

Disaster Management, Monte Carlo Simulation, Palm Oil Industry, Risk Management , Survival Analysis

Abstract

The palm oil industry is a strategic sector that plays a significant role in foreign exchange earnings and national employment, but is highly vulnerable to disaster risks, both from natural (floods, fires) and technical (machine breakdowns, supply chain disruptions) factors. This study develops an industrial engineering-based disaster management framework by integrating Monte Carlo Simulation to estimate economic losses and Survival Analysis (Kaplan–Meier and Log-Rank Test) to assess the operational resilience of palm oil mills. The simulation results show an average annual loss of IDR 3.87 billion, with a 95% VaR of IDR 8.97 billion and a 95% CVaR of IDR 11.25 billion. Factors such as preventive maintenance, the location of the mill in a flood-prone area, and the availability of backup power sources significantly influence post-disaster recovery time. This study provides a quantitative basis for the allocation of financial risk reserves and strategic recommendations to improve the operational resilience of the palm oil industry to disaster uncertainty.

References

T. F. Suardi, L. Sulistyowati, T. I. Noor, and I. Setiawan, “Analysis of the Sustainability Level of Smallholder Oil Palm Agribusiness in Labuhanbatu Regency, North Sumatra,” Agric., vol. 12, no. 9, Sep. 2022, doi: 10.3390/agriculture12091469.

K. Mohd Hanafiah, A. H. Abd Mutalib, P. Miard, C. S. Goh, S. A. Mohd Sah, and N. Ruppert, “Impact of Malaysian palm oil on sustainable development goals: co-benefits and trade-offs across mitigation strategies,” Jul. 01, 2022, Springer. doi: 10.1007/s11625-021-01052-4.

A. J. Astari, J. C. Lovett, and M. Wasesa, “Sustainable pathways in Indonesia’s palm oil industry through historical institutionalism,” World Dev. Sustain., vol. 6, Jun. 2025, doi: 10.1016/j.wds.2024.100200.

L. Ezquerro, R. Coimbra, B. Bauluz, C. Núñez-Lahuerta, T. Román-Berdiel, and M. Moreno-Azanza, “Large dinosaur egg accumulations and their significance for understanding nesting behaviour,” Geosci. Front., vol. 15, no. 5, Sep. 2024, doi: 10.1016/j.gsf.2024.101872.

F. Mehri, A. Heshmati, E. T. Ghane, M. Khazaei, T. Mahmudiono, and Y. Fakhri, “A probabilistic health risk assessment of potentially toxic elements in edible vegetable oils consumed in Hamadan, Iran,” BMC Public Health, vol. 24, no. 1, Dec. 2024, doi: 10.1186/s12889-023-17624-1.

F. Nurfatriani, Ramawati, G. K. Sari, W. Saputra, and H. Komarudin, “Oil Palm Economic Benefit Distribution to Regions for Environmental Sustainability: Indonesia’s Revenue-Sharing Scheme,” Land, vol. 11, no. 9, Sep. 2022, doi: 10.3390/land11091452.

W. Zhang, M. Xu, Y. Feng, Z. Mao, and Z. Yan, “The Effect of Procrastination on Physical Exercise among College Students—The Chain Effect of Exercise Commitment and Action Control,” Int. J. Ment. Health Promot., vol. 26, no. 8, pp. 611–622, 2024, doi: 10.32604/ijmhp.2024.052730.

Y. Cheng, “Monte Carlo-Based VaR Estimation and Backtesting Under Basel III,” Risks, vol. 13, no. 8, Aug. 2025, doi: 10.3390/risks13080146.

M. A. Bin Mohd Yusof, Y. J. Chan, C. H. Chong, and C. L. Chew, “Effects of operational processes and equipment in palm oil mills on characteristics of raw Palm Oil Mill Effluent (POME): A comparative study of four mills,” Clean. Waste Syst., vol. 5, Aug. 2023, doi: 10.1016/j.clwas.2023.100101.

A. Senova, A. Tobisova, and R. Rozenberg, “New Approaches to Project Risk Assessment Utilizing the Monte Carlo Method,” Sustain., vol. 15, no. 2, Jan. 2023, doi: 10.3390/su15021006.

P. H. Nguyen, A. H. Herring, and S. M. Engel, “Power Analysis of Exposure Mixture Studies Via Monte Carlo Simulations,” Stat. Biosci., vol. 16, no. 2, pp. 321–346, Jul. 2024, doi: 10.1007/s12561-023-09385-7.

Q. Nie, W. Li, and X. Luo, “Monte Carlo Simulation of Quantum-Cutting Nanocrystals as the Luminophore in Luminescent Solar Concentrators,” Photonics, vol. 11, no. 6, Jun. 2024, doi: 10.3390/photonics11060553.

J. W. Chen, Y. J. Chan, S. K. Arumugasamy, and S. K. Yazdi, “Process modelling and optimisation of methane yield from palm oil mill effluent using response surface methodology and artificial neural network,” J. Water Process Eng., vol. 52, Apr. 2023, doi: 10.1016/j.jwpe.2023.103493.

A. D. Trigilio, Y. W. Marien, M. Edeleva, D. R. D’hooge, and P. H. M. Van Steenberge, “Supporting information for Simulation time analysis of kinetic Monte Carlo algorithmic steps for basic radical (de)polymerization kinetics of linear polymers 1. Kinetic parameters for the studied polymerization processes,” 2022.

B. Tasci, A. Omar, and S. Ayvaz, “Remaining useful lifetime prediction for predictive maintenance in manufacturing,” Comput. Ind. Eng., vol. 184, Oct. 2023, doi: 10.1016/j.cie.2023.109566.

B. Coutinho, M. Moreira, E. Pereira, and G. Gonçalves, “Survival Analysis-Based System for Predictive Maintenance Optimization,” SN Comput. Sci., vol. 6, no. 7, Oct. 2025, doi: 10.1007/s42979-025-04291-9.

I. U. Khan et al., “Innovative Solutions for Palm Oil Mill Effluent Treatment: A Membrane Technology Perspective,” Jul. 11, 2025, American Chemical Society. doi: 10.1021/acsestwater.4c00432.

J. González-Domínguez, G. Sánchez-Barroso, J. García-Sanz-Calcedo, N. De, and S. Neves, “Cox proportional hazards model used for predictive analysis of the energy consumption of healthcare buildings.”

F. Varina, S. Hartoyo, N. Kusnadi, and A. Rifin, “EFFICIENCY OF OIL PALM SMALLHOLDERS IN INDONESIA: A META-FRONTIER APPROACH,” J. Manaj. dan Agribisnis, Nov. 2020, doi: 10.17358/jma.17.3.217.

L. Judijanto, “The Importance of a Single Narrative Communication in Addressing the Global Negative Campaign against Palm Oil Products,” J. Environ. Earth Sci., vol. 7, no. 10, Oct. 2025, doi: 10.30564/jees.v7i10.11841.

Downloads

Published

2025-11-26

How to Cite

Suksmanatyo, Wahyudi, B. F., Hidayat, M. T., Suheriyanto, Yulianto, & Aulady, M. F. N. (2025). Disaster Management in the Palm Oil Industry Using Industrial Engineering Methods with Monte Carlo Simulation and Survival Analysis. Journal of Advances in Information and Industrial Technology, 7(2), 113–126. https://doi.org/10.52435/jaiit.v7i2.721

Issue

Section

Research Article