scholarly journals Modifikasi Perencanaan Struktur Apartemen One East Residence Surabaya dengan Struktur Komposit Baja Beton dan Base Isolator: High Damping Rubber Bearing

2017 ◽  
Vol 6 (2) ◽  
Author(s):  
Adnan Fadhlullah Muharam ◽  
Endah Wahyuni ◽  
Data Iranata
2020 ◽  
Vol 6 (2) ◽  
pp. 181-194
Author(s):  
Syahnandito ◽  
Reni Suryanita ◽  
Ridwan

Salah satu cara yang dapat dilakukan adalah menggunakan peredam beban gempa dengan sistem isolasi dasar (base isolation system). Penggunaan base isolation system  pada bangunan dapat mengisolasi perambatan getaran akibat gempa dari tanah ke struktur atas bangunan menggunakan komponen berbahan karet. Tujuan penelitian ini adalah untuk menganalisis pengaruh penggunaan sistem isolasi dasar berupa High Damping Rubber Bearing pada periode dan gaya geser dasar  struktur beton bertulang. Objek penelitian adalah bangunan hotel 15 lantai dengan ketinggian 62,9 m. Penelitian diawali dengan pemodelan struktur menggunakan aplikasi ETABS v2016 sehingga didapatkan periode dan gaya geser dasar struktur fixbase. Tahap selanjutnya memberikan gaya pada model struktur dengan isolasi dasar High Dumper Rubber Bearing sehingga didapatkan periode dan gaya geser dasar struktur dengan base isolator. Hasil analisis pada struktur fixbase didapatkan periode sebesar 4,212 detik, dengan gaya geser dasar didapatkan sebesar 1470,725 ton. Sedangkan hasil analisis pada struktur dengan base isolator didapatkan periode sebesar 5,500 detik, dengan gaya geser dasar didapatkan sebesar 1286,071 ton. Maka dapat disimpulkan bahwa pada struktur dengan base isolator terjadi peningkatan periode sebesar 30,58 %, sedangkan gaya geser dasar terjadi penurunan 12,56 %.


2019 ◽  
Vol 5 (1) ◽  
pp. 50
Author(s):  
Ardiansyah Ibrahim ◽  
Erma Desmaliana ◽  
Amatulhay Pribadi

ABSTRAKIndonesia merupakan wilayah yang memiliki resiko gempa yang cukup tinggi karena terletak pada pertemuan tiga lempeng tektonik,oleh karena itu telah dikembangkan metode desain alternatif dengan tujuan untuk mengurangi resiko kerusakan bangunan akibat beban gempa yang dikenal dengan nama sistem isolasi gempa (seismic isolation).Pada bangunan ini dipasang base isolator jenis High Damping Rubber Bearing (HDRB) dengan diameter 600 mm dan tinggi 407,9 mm.Berdasarkan hasil, diperoleh bahwa penggunaan base isolator dapat memperpanjang periode struktur bangunan dua kali untuk kedua sistem, kemudian dapat mereduksi gaya geser arah X mencapai 40% dan arah Y mencapai 50% untuk kedua sistem, lalu memperkecil simpangan antar lantai dan juga membutuhkan waktu yang lebih singkat untuk mencapai faktor partisipasi modal yang diinginkan sesuai peraturan yaitu minimal 90%. Kesimpulan dari penelitian ini adalah struktur bangunan beton pracetak lebih efektif dibandingkan dengan beton cast in situ dari aspek respon struktur.Kata kunci: pracetak, cast in situ, high damping rubber bearing ABSTRACTIndonesia is prone to seismic hazard load due to its location situated on a meeting point of three tectonic plates, therefore the alternative design methods have been developed with the aim to reduce the risk of damage to buildings due to the load known as the earthquake isolation system. At one of the building analyzed in this research was provided with High Damping Rubber Bearing (HDRB) with a diameter of 600 mm and a height of 407,9 mm. Based on the results obtained, the use of base isolator can extend the period of the structure of the building twice forboth systems, reduce the shear force reached 40% in the X direction and 50% in the Y direction for both systems, and then minimize the deviation between floors of a building and also requires less time to achieve the desired modal participation factors according the regulations that is at least 90%. The conclusion of this research is that the structure of precast concrete is more effective than cast in situ concrete from the aspect of structure response.Keywords: precast, cast in situ, high damping rubber bearing


Author(s):  
Jun-Ping Pu ◽  
C. S. Tsai ◽  
Jian-Fa Huang ◽  
Bo-Jen Chen ◽  
Yao-Min Fang

In recent years, many studies on base isolation strategies and devices have been developed and applied in U. S. A., Europe, Japan, and New Zealand. The high damping rubber bearing belongs to one kind of the earthquake-proof ideas of base isolation technologies. The installation of high damping rubber bearings can lengthen the natural period of a building and simultaneously reduce the earthquake-induced energy trying to impart to the building. The objective of this paper is to investigate the base isolation effect of high damping rubber bearings. The uniaxial, biaxial, and triaxial shaking table tests were performed to study the seismic behavior of a 0.4-scale three-story isolated steel structure in the National Center for Research on Earthquake Engineering in Taiwan. The experimental and analytical results show that the nonlinear mechanical characteristics of the high damping rubber bearings can be reasonably simulated.


2014 ◽  
Vol 7 (6) ◽  
pp. 1141-1169
Author(s):  
Patrick L.Y. Tiong ◽  
Azlan Adnan ◽  
Ahmad B.A. Rahman ◽  
Abdul K. Mirasa

2012 ◽  
Vol 234 ◽  
pp. 90-95 ◽  
Author(s):  
Donato Cancellara ◽  
Fabio de Angelis

In the present paper two different base isolation systems, designed and verified according to the european seismic code (EC2 and EC8), are compared for evaluating the behaviour of a base isolated building, highly irregular in plan, in presence of a seismic excitation. The devices adopted for realizing the different base isolation systems are the High Damping Rubber Bearing (HDRB) and the Lead Rubber Bearing (LRB) both of them actuated in parallel with a Friction Slider (FS). A dynamic nonlinear analysis for a three-dimensional base isolated structure has been performed. Recorded accelerograms for bi-directional ground motions, compatible with the reference elastic response spectrum for each limit state have been used for a more realistic evaluation of the seismic response of the structure and a more realistic comparative analysis between the base isolated structure with the different considered base isolation systems and the traditional fixed base structure.


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