PERENCANAAN JEMBATAN CABLE STAYED 200 METER (Studi Kasus : Jembatan Cijambe Garut)

Authors

  • Syapril Janizar syapriljanizar
  • Habdullah Habdullah Teknik Sipil Universitas Winaya Mukt i
  • Felix Setiawan Teknik Sipil Universitas Winaya Mukt i
  • Lucky Ampearawan Schipper Teknik Sipil Universitas Winaya Mukt i

DOI:

https://doi.org/10.51988/jtsc.v3i1.45

Keywords:

bridge, cable stayed, box girder, two planes system

Abstract

In this final project, we discuss the Planning of a Cable Stayed Bridge with a Length of 200 meters. This bridge has a length of 200 meters with a span of 180 meters and an edge span of 20 meters. The bridge cable configuration uses a semi harp pattern with a two planes system cable position. The bridge has a vehicle floor width of 6.00 meters, and a sidewalk of 1.5 meters right and left. As for the results of this design, the secondary structure of the bridge consists of railings with a hollow steel profile with a diameter of 60.5, curbs with a thickness of 250 mm, a vehicle floor plate with a thickness of 200 mm concrete slab and 50 mm asphalt, and a girder consisting of a WF 1300,550 transverse girder. 28.34, longitudinal girder WF 600.200.11.17, and cantilever girder WF 300.150.6.5.9 for the connection of the girder itself using a simple connection with an L elbow plate. While the main structure consists of the main girder using rectangular twin box girders with dimensions of 2500.1500.50.50, then stay cable is made up of 7 – wire strands with a diameter of 15.2 mm and a pylon which is designed using reinforced concrete material with dimensions of 4000 mm x 3000 mm with a cavity inside.

References

Alfath, Y., Farni, I., & Permata, R. (2019). Perencanaan Ulang Jembatan Cable Stayed Siak Sri Inderapura Riau. Abstract of Undergraduate Research, Faculty of Civil and Planning Engineering, Bung Hatta University, 1(1).

ANWAR, K. (2018). Menghitung Ulang Cable-Stayed Jembatan Suramadu (Doctoral dissertation, Universitas Islam Sultan Agung).

Aqil, S. G. (2018). DESAIN ULANG JEMBATAN LOLONG KOTA PADANG DENGAN MENGGUNAKAN METODA CABLE STAYED (Doctoral dissertation, Universitas Andalas).

Gimsing, Neils J. dan Christos T. Georgakis, 1983. Cable Supported Bridge : Concepts and Design (First Edition). West Sussex : John Wiley and Sons Inc.

Hidayat, I. (2011). Analisa konstruksi jembatan cable stayed menggunakan metode Kantilever: studi kasus Jembatan Suramadu= Analysis of cable stayed.

Irawan Redrik, Tristanto Lanneke, WN Virlanda Tommy. 2011. Perencanaan Teknis Jembatan Cable Stayed. Bandung : Pusat Penelitian dan Pengembangan Jalan dan Jembatan.

Manan, S., Bayzoni, B., & Sebayang, S. (2018). Desain dan Analisis Jembatan Cable Stayed Dengan Bentang 800 m. Jurnal Rekayasa Sipil dan Desain (JRSDD), 6(4), 411-420.

Nugraha, Rizky. 2017. Design Alternatif Jembatan Musi III Menggunakan Sistem Multi – Span – Stayed dengan Fishbone Model. Surabaya : Jurusan Teknik Sipil ITS.

Prasetyo, W. (2013). Perencanaan Ulang Jembatan Sungai Brantas pada Jalan Tol Kertosono–Mojokerto dengan Metode cable Stayed.

Podolny & Scalm J.B. 1976. Construction and Design of Cable Stayed Bridge. New York : John Wiley & Sons Inc.

Purnawan, R. (2017). Desain Jembatan Cable Stayed Sembayat Baru dengan Single Plane System Menggunakan Metode Pelaksanaan Balanced Cantilever (Doctoral dissertation, Institut Teknologi Sepuluh Nopember).

Standar Nasional Indonesia. Perencanaan Jembatan Terhadap Beban Gempa. RSNI 2833 – 2016. Departemen Pu Dirjen Bina Marga.

Standar Nasional Indonesia, Perencanaan Struktur Baja untuk Jembatan. RSNI T-03-2005. Departemen PU Dirjen Bina Marga.

Standar Nasional Indonesia. Persyaratan Beton Struktural Untuk Bangunan Gedung. SNI 2847 – 2013. Badan Standarisasi Nasional.

Standar Nasional Indonesia. Standar Pembebanan untuk Jembatan. SNI 1725 – 2016. Departemen PU Dirjen Bina Marga.

Standar Nasional Indonesia. Tata Cara Pelaksanaan Struktur Baja Untuk Bangunan Gedung. SNI 1729 – 2015. Departemen PU Dirjen Bina Marga.

Supriadi dan Muntohar. 2007. JEMBATAN (Edisi Ke – IV). Yogyakarta : Beta Offset.

Surat Edaran Menteri Pekerjaan Umum dan Perumahan Rakyat. Pedoman Perencanaan Teknis Jembatan Beruji Kabel. SK PU 23 April 2015. Kementerian Pekerjaan Umum dan Perumahan Rakyat.

Troitsky, M.S. 1997. Cable Stayed Bridge : Theory and Design. London : BSP Professional Book.

Troitsky, M.S. 1997. Cable Stayed Bridge : Theory and Design. London : Crosby Lockwood Staples.

Utomo, R. B., & Purwoko, S. (2000). Analisis dan Desain Struktur Jembatan" Cable-Stayed".

Walter, R. , Houriet, Isler, Moia, Klien. 1999. Cable Styed Bridge Second Edition. London : Thomas Telford Publishing.

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Published

2022-02-21

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