Haunch Beams Behavior And Performance In High-Rise Buildings With Spectrum And Pushover Response

Gali Pribadi, Rinda Karlinasari

Abstract


Indonesia is located in an active tectonic zone with high seismic potential, so that high-rise building structures are very vulnerable to earthquake loads. One alternative to improve structural performance is the use of haunch beams, a non-prismatic beam model with varying stiffness in length. This study examines the effectiveness of haunch beams in improving the seismic performance of the SRPMK system, a 60 m high building without shear walls and with varying column dimensions along the building height. Prismatic beams (50/35) and haunch beams (100/35) with varying lengths of 1/5L, 1/4L, and 1/3L were used in the beam-column connection. The analysis was carried out using the response spectrum method and the nonlinear static pushover method. The results of the pushover analysis study, with the 1/3L haunch beam configuration, provided better structural performance in controlling drift and displacement, especially in high-rise buildings with columns that taper upwards. The nonlinear static procedure method (pushover) showed that the 1/3L haunch beam variant showed the most effective performance. Pushover X, displacement 0.259 m, base shear 16583 kN, drift 0.81% ≤ 1%, category IO, pushover Y, displacement 0.448 m, base shear 24498 kN, drift 1.33% ≤ 2%, limit category IO-LS. Smaller drift valuesindicate increased stiffness of the frame system. B-Haunch 1/3 L provides better structural performance in controlling drift and displacement, especially in tall buildings with columns that taper upwards. Smaller drift valuesindicate increased stiffness of the frame system. The addition of shear walls later will increase stiffness.

References


Hu, X. F., Deng, H. C., He, J. H., Shen, Z. M., & Peng, X. F. (2023). Complex genesis of multiperiod fractures in the Middle Triassic Leikoupo Formation in the Pengzhou gas field, western Sichuan Basin, China. Petroleum Science, 20(1), 161–176. https://doi.org/10.1016/j.petsci.2022.10.001

Pratiwi, N., Wijaya, P. K., & Hardianto, L. A. D. (2026). Analisis Numerik Tekuk Torsi-Lateral Balok Baja I Web Tapered. Jurnal Teknik Sipil, 22(1), 132-145.

Widodo Pawirodikromo, Analisis Dinamik Struktur, Pustaka Pelajar, Yogyakarta, 2017.

Sharma, Nishant., Dasgupta, Kaustubh., Dey, Arindam, Natural period of reinforced concrete building frames on pile foundation considering seismic soil-structure interaction effects. Structures 27 (2020) 1594–1612. https://doi.org/10.1016/j.istruc.2020.07.010

M. Afif Salim & Agus B. Siswanto. Rekayasa Gempa. K-Media, Yogyakarta, 2018.

Al-Ahmed, A. H. A., Al-Zuhairi, A. H., & Hasan, A. M. (2022, March). Behavior of reinforced concrete tapered beams. In Structures (Vol. 37, pp. 1098-1118). Elsevier.

Chockalingam, S. N., Nithyadharan, M., & Pandurangan, V. (2020). Shear stress distribution in tapered I-beams: Analytical expression and finite element validation. Thin-Walled Structures, 157, 107152.

Bedar Rauf Hassan, Ali Ramadhan Yousif. Shear behavior and capacity of reinforced concrete haunch beams: comprehensive, comparative analysis, and structural judgment. Structures, 2023. https://doi.org/10.1016/j.istruc.2023.105167

Jasim, M. D. (2023). Structural behavior of reinforced concrete pre-stressed tapered beams. Periodicals of Engineering and Natural Sciences, 11(1), 223-238.

Hassan, B. R., & Yousif, A. R. (2024, March). Effect of size factor and tapered angles on the shear behavior and strength of haunched beams reinforced with basalt fiber reinforced polymer rebars: Experimental and analytical study. In Structures (Vol. 61, p. 106036). Elsevier.

Ali Hussein Ali Al-Ahmed, Alaa Hussein Al-Zuhairi, Ammar Mousa Hasan. Behavior of reinforced concrete tapered beams. Structures, 2022. https://doi.org/10.1016/j.istruc.2022.01.080

Ru, Y., He, L., & Jiang, H. (2022). Study on a new type of beam-column joint equipped with inclined tapered steel plates. Journal of Building Engineering, 45, 103581.

Hassan, B. R., & Yousif, A. R. (2023). Shear strength of reinforced concrete tapered beams by using systematic multiscale models and artificial neural network. Iranian Journal of Science and Technology, Transactions of Civil Engineering, 47(6), 3549-3569.

Archundia-Aranda HI, Tena-Colunga A, Grande-Vega A, Behavior of reinforced concrete haunched beams subjected to cyclic shear loading. Eng Struct 2017;49: 27–42. https://doi.org/10.1016/j.engstruct.2012.10.037.

Zakian, P., & Kaveh, A. (2023). Seismic design optimization of engineering structures: a comprehensive review. Acta Mechanica, 234(4), 1305-1330.




DOI: http://dx.doi.org/10.30659/jacee.9.1.%25p

Refbacks

  • There are currently no refbacks.


JACEE (Journal of Advanced Civil and Environmental Engineering) was established to meet the need for dissemination of research results, critical reviews, and quality analysis. JACEE invites and welcomes the submission of advanced research and review papers, innovations and developed selected conference papers that have never been previously publicized. This journal provides publications and a forum to the academics, scholars and advanced level students for exchanging significant information and productive ideas associated with all these disciplines. It is published by Fakultas Teknik Universitas Islam Sultan Agung, Indonesia, in collaboration with Fédération Internationale du Béton twice a year in April and October.