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Ditemukan 4 dokumen yang sesuai dengan query
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Yulius
"Tesis ini membahas perilaku pile group spunpile dengan memperhatikan sambungan antara pile dengan pilecap pada kondisi tanah lunak. Penelitian ini mengunakan analisis numerik metode elemen hingga menggunakan software SAP2000. Hasil analisa pushover grup spunpile pada tanah sangat lunak menunjukkan bahwa dengan menambah prosentase tulangan pada koneksi antara pile dengan pilecap menambah performa grup tiang; dan dengan bertambahnya beban vertikal menurunkan performa dari grup spunpile.

This thesis discusses the behavior of spunpile pile groups by paying attention to the connection between pile and pilecap in soft soil conditions. This study uses numerical analysis of finite element methods using SAP2000 software. The results of the spunpile group pushover analysis on very soft soils indicate that by increasing the percentage of reinforcement on the connection between the pile and pilecap increasing performance of spunpile group; and with increasing vertical load decreases the performance of the spunpile group."
Depok: Fakultas Teknik Universitas Indonesia, 2019
T54202
UI - Tesis Membership  Universitas Indonesia Library
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Wisnu Pratama Putra
"[ABSTRAK
Semakin bertambahnya kebutuhan ruang vertikal di kota besar seperti Jakarta
membuat para ahli membangun banyak bangunan bertingkat. Meski demikian,
rencana ini tidak selalu efektif oleh karena keberadaan bangunan purbakala
(heritage) yang harus dilestarikan. Oleh karena itu, bangunan baru harus dibangun
menggunakan sistem transfer yang dalam penelitian ini berupa kombinasi antara
balok transfer prategang parsial dan kolom-kolom pendukung. Analisa pushover
akan dilakukan untuk bangunan ini sehingga kinerja bangunan pada fase inelatis
dapat diketahui. Hasil bangunan sistem transfer akan dibandingkan dengan hasil
analisa pushover pada bangunan regular untuk mengetahui pengaruh keberadaan
sistem transfer terhadap kinerja inelastik struktur. Sebelum dilakukan analisa
pushover, bangunan didesain secara dinamik linear dengan mengacu pada
peraturan SNI 03-1726-2012 dan SNI 03-2847-2002. Hasil perbandingan
menunjukkan pertambahan degree of prestressing akan memperkecil daktilitas
dan kemampuan disipasi energi bangunan. Rasio pengurangan kemampuan
disipasi energi bervariasi antara 15% - 23%. Kinerja terendah seluruh bangunan
pada saat target perpindahan ialah Life Safety, yang mana merupakan level kinerja
Basic Safety Objectives berdasarkan FEMA 356. Dari sini dapat ditarik
kesimpulan bahwa peraturan yang digunakan dalam desain mampu menghasilkan
bangunan dengan performa cukup baik.

ABSTRACT
The increasing need of vertical room in Jakarta made experts build a lot of multistories
buildings. Nonetheless, this plan is not always effective because of the
presence of heritage building which must be preserved. Consequently, new
building must be built using a transfer system which in this research is a
combination between partially prestressed transfer beam and supporting columns
below the beam. To determine the inelastic performance of the building, pushover
analysis will be applied. The pushover analysis result for transfer system building
later will be compared with the result for regular building to understand the effect
of transfer system to structure?s inelastic performance. Prior to applying pushover
analysis, both buildings are designed based on SNI 03-1726-2012 and SNI 03-
2847-2002 codes. The comparison shows the degree of prestressing accretion will
reduce the ductility and energy dissipation capacity of the building. The reduction
of energy dissipation capacity ratio varies between 15% - 23%. The lowest
performance of both buildings at target displacement is Life Safety, which is the
Basic Safety Objectives performance based on FEMA 356. From this, it can be
concluded that the codes used in designing the building is able to produce
building with quite good performance., The increasing need of vertical room in Jakarta made experts build a lot of multistories
buildings. Nonetheless, this plan is not always effective because of the
presence of heritage building which must be preserved. Consequently, new
building must be built using a transfer system which in this research is a
combination between partially prestressed transfer beam and supporting columns
below the beam. To determine the inelastic performance of the building, pushover
analysis will be applied. The pushover analysis result for transfer system building
later will be compared with the result for regular building to understand the effect
of transfer system to structure’s inelastic performance. Prior to applying pushover
analysis, both buildings are designed based on SNI 03-1726-2012 and SNI 03-
2847-2002 codes. The comparison shows the degree of prestressing accretion will
reduce the ductility and energy dissipation capacity of the building. The reduction
of energy dissipation capacity ratio varies between 15% - 23%. The lowest
performance of both buildings at target displacement is Life Safety, which is the
Basic Safety Objectives performance based on FEMA 356. From this, it can be
concluded that the codes used in designing the building is able to produce
building with quite good performance.]"
2013
T43537
UI - Tesis Membership  Universitas Indonesia Library
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Dodi Ikhsanshaleh
"Untuk memperoleh sistem penahan beban lateral yang efektif dan efisien dari sebuah struktur dinding geser berangkai, balok perangkai harus didesain daktail dengan perilaku histeresis yang stabil saat pembebanan siklik. Balok profil baja dapat digunakan sebagai balok perangkai yang didesain daktail terhadap beban geser dimana prilakunya mirip dengan link geser pada struktur rangka bresing eksentris.
Penelitian ini mengevaluasi perilaku inelastis dari balok perangkai baja yang digunakan pada struktur dinding geser berangkai beton bertulang. Struktur bangunan 10 lantai dengan dua dinding geser berbentuk C yang dirangkai dengan dinding geser berbentuk I dan dikelilingi oleh struktur portal beton bertulang dievaluasi dengan analisis statik nonlinier (pushover analysis).
Struktur beton bertulang didesain berdasarkan SNI 03-2847-2002, sedangkan prosedur dan parameter inelastis untuk analisis statik nonlinier diadopsi dari FEMA 356. Perilaku inelastis dari balok perangkai baja dimodelkan dengan sendi plastis momen dan geser yang didistribusikan di sepanjang bentang untuk mengevaluasi jenis dan perkembangan pembentukan sendi plastis. Hasil analisis statik nonlinier pushover menunjukkan bahwa sistem hibrid ini mempunyai daktilitas yang cukup tinggi. Semakin kaku balok perangkai baja yang digunakan, akan memberikan kinerja dan daktilitas struktur yang semakin meningkat dalam menahan beban gempa.

In order to achieve an effective and efficient lateral load-resisting system of couple wall structure, the coupling beam have to posse stable hysteretic response under cyclic loading. Steel coupling beam can be designed to provide satisfactory hysteretic behavior by yielding in shear, similar to behavior of a shearlink in eccentrically braced frame.
This research provides an evaluation of inelastic behavior of hybrid couple wall system, in which steel beams are used to couple reinforced concrete shearwall. The 10-story hybrid cople wall structure which steel coupling beam are used to couple reinforced concrete shearwall is analyzed using nonlinier static procedure or pushover analysis.
Detailing requirement of reinforce concrete structure was designed based on the SNI 03-2847-2002 and nonlinear static procedure and inelastic parameter adopted form FEMA 356. Hinge property that distributed along the span used to represent inelastic shear and moment behavior of steel coupling beam. From the result of pushover analysis hybrid couple wall provided good performance dan ductility.
"
Depok: Fakultas Teknik Universitas Indonesia, 2011
S50689
UI - Skripsi Open  Universitas Indonesia Library