The integration of dynamic value stream mapping and cost time profile method for optimizing offshore drilling logistic base operations
DOI:
https://doi.org/10.55324/ijoms.v3i10.924Keywords:
lean, DVSM, CT-Profile, shore base, lifting, logistic, oil and gasAbstract
The research aims to analyze the integration of Dynamic Value Stream Mapping (DVMM) and Cost Time Profile (CT-profile) method for optimizing offshore drilling logistic base operations. The novelty of the research is the implementation of DVMM and CT-profile that implemented in monitoring system INTACTS (Integrated Dynamic value stream mapping and Cost time profile for shore base operation) which is directly connected to shore base material movement recording system. Each successful lift performed in JIT mode will be recorded and its characteristics studied so that it can be applied to other material lifting operations. This research uses data on the lifting operation on July - December 2020. The new method is applied in a logistic system for drilling activity. The research shows that DVSM is suitable to be applied for logistics in off shore base problems since the job and situation are very dynamics.
References
Gaspar, F., & Leal, F. (2020). A methodology for applying the shop floor management method for sustaining lean manufacturing tools and philosophies: a study of an automotive company in Brazil. International Journal of Lean Six Sigma, 11(6). https://doi.org/10.1108/IJLSS-09-2019-0098
Gracanin, D., Buchmeister, B., & Lalic, B. (2014). Using cost-time profile for value stream optimization. Procedia Engineering, 69. https://doi.org/10.1016/j.proeng.2014.03.113
Gregory, B. (2012). The softer side of lean: Analyzing corporate culture can point the way to necessary changes. Human Resource Management International Digest, 20(6). https://doi.org/10.1108/hrmid.2012.04420faa.003
Jituri, S., Kaur, R., Mourtzis, D., Fleck, B., & Ahmad, R. (2021). A decision support system to define, evaluate and guide the lean assessment and implementation at the shop-floor level. International Journal of Manufacturing Research, 16(4). https://doi.org/10.1504/ijmr.2021.119650
Klein, L. L., Alves, A. C., Abreu, M. F., & Feltrin, T. S. (2022). Lean management and sustainable practices in Higher Education Institutions of Brazil and Portugal: A cross country perspective. Journal of Cleaner Production, 342. https://doi.org/10.1016/j.jclepro.2022.130868
Kurdve, M., & Bellgran, M. (2021). Green lean operationalisation of the circular economy concept on production shop floor level. Journal of Cleaner Production, 278. https://doi.org/10.1016/j.jclepro.2020.123223
Leatherbee, M., & Katila, R. (2020). The lean startup method: Early-stage teams and hypothesis-based probing of business ideas. Strategic Entrepreneurship Journal, 14(4). https://doi.org/10.1002/sej.1373
Lugert, A., Völker, K., & Winkler, H. (2018). Dynamization of Value Stream Management by technical and managerial approach. Procedia CIRP, 72. https://doi.org/10.1016/j.procir.2018.03.284
Manjunath, M., Prasad, H. S., Kumar, K. K., & Deepa, P. (2014). Value stream mapping as a tool for lean implementation: A case study. International Journal of Innovative Research & Development, 2(4).
Murugaiah, U., Benjamin, S. J., Marathamuthu, M. S., & Muthaiyah, S. (2010). Scrap loss reduction using the 5-whys analysis. International Journal of Quality and Reliability Management, 27(5). https://doi.org/10.1108/02656711011043517
Parameswaran, A., & Ranadewa, K. A. T. O. (2023). Learning-to-learn sand cone model integrated lean learning framework for construction industry. Smart and Sustainable Built Environment. https://doi.org/10.1108/SASBE-10-2022-0234
Rachman, A., & Ratnayake, R. M. C. (2019). Adoption and implementation potential of the lean concept in the petroleum industry: state-of-the-art. International Journal of Lean Six Sigma, 10(1). https://doi.org/10.1108/IJLSS-10-2016-0065
Roth, N., Deuse, J., & Biedermann, H. (2020). A framework for System Excellence assessment of production systems, based on lean thinking, business excellence, and factory physics. International Journal of Production Research, 58(4). https://doi.org/10.1080/00207543.2019.1612113
Simonyte, S., Adomaitiene, R., & Ruzele, D. (2022). Experience of lean application in higher education institutions. International Journal of Lean Six Sigma, 13(2). https://doi.org/10.1108/IJLSS-11-2020-0208
Smith, A., & Thangarajoo, Y. (2015). Lean Thinking: An Overview. Industrial Engineering and Management, 04(02). https://doi.org/10.4172/2169-0316.1000159
Wasenberg, M. (2017). A review of lean and the lean and the lean implementation in Statoil [Master Thesis]. University of Stavanger.
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