Finite Element Analysis of Reinforcement Design in Takeup Tower Under Dynamic Loading Conditions

Authors

  • Praja Dilla Atos Universitas Sriwijaya
  • Romli Romli Politeknik Negeri Sriwijaya, Indonesia
  • Nanda Yusril Mahendra Politeknik Negeri Sriwijaya, Indonesia
  • Agung Mataram Universitas Sriwijaya, Indonesia
  • Amrifan Saladin Mohruni Universitas Sriwijaya, Indonesia

DOI:

https://doi.org/10.53893/ijmeas.v2i2.271

Keywords:

Finite Element Analysis, Reinforcement Design, Takeup Tower, Dynamic Load, Stress Analysis, Material Deformation

Abstract

This research focuses on the finite element analysis for the design of reinforcement towers under dynamic load conditions. The reinforcement tower is a crucial part of the retrieval system that supports the system’s optimal function. This study identifies critical areas and plans reinforcement design steps on the construction of the retrieval tower. Stress analysis helps determine reinforcement design steps based on established standards and analytical approaches. The finite element method is used to analyze the design of the retrieval tower. The model is meshed into small triangular parts to find solutions in the form of finite element analysis of reinforcement tower design under dynamic load conditions. The results of finite element computation show normal stress fluctuations and increased displacement over time, indicating material deformation. This analysis is essential for understanding material behavior and designing systems that can effectively withstand dynamic loads.

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References

Cheng, X., Tang, H., Qin, H. et al. (2024). Stress field and stability calculation method for unloading slope considering the influence of terrain. Bull Eng Geol Environ 83, 60. https://doi.org/10.1007/s10064-024-03557-5.

Fan, Junwei, Shijiao Yang, Bo Deng, Bing Sun, and Taoying Liu. 2023. "A Comparison of Load Distribution Methods at the Node and Internal Force Analysis of the Lattice Beam Based on the Winkler Foundation Model" Buildings 13, no. 7: 1731. https://doi.org/10.3390/ buildings13071731.

Kaveh, A. (2014) Computational structural analysis and finite element methods, Computational Structural Analysis and Finite Element Methods. doi: 10.1007/978-3-319-02964-1.

Rice, J. Robert (2017). mechanics of solids. Encyclopedia Britannica. https://www.britannica.com/ science/mechanics-of-solids.

Sandip K. Singh, Kolja Ostendorf, Markus Euring and Kai Zhang. (2022). Journal: Green Chemistry, Volume 24, Number 6, Page 2624.DOI: 10.1039/D2GC00014H.

Xu, JQ., Mutoh, Y. A. (2003). Normal Force on the Free Surface of a Coated Material. Journal of Elasticity 73, 147–164. https://doi.org/10.1023/B:ELAS.0000029934.93885.11

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Published

2024-05-31

How to Cite

Praja Dilla Atos, Romli, R., Nanda Yusril Mahendra, Agung Mataram, & Amrifan Saladin Mohruni. (2024). Finite Element Analysis of Reinforcement Design in Takeup Tower Under Dynamic Loading Conditions. International Journal of Mechanics, Energy Engineering and Applied Science (IJMEAS), 2(2), 36–41. https://doi.org/10.53893/ijmeas.v2i2.271