PERBANDINGAN RESPONS SPEKTRUM TANAH HIPOTESA DENGAN RESPON SPEKTRUM RSNI 03-1726-201X KOTA SEMARANG

Mahmud Kori Effendi(1),


(1) Jurusan Teknik Sipil, Fakultas Teknik, Universitas Negeri Semarang (UNNES)

Abstract

Nonlinear response analysis of soil in Semarang city is needed currently. There is change in earthquake map in Indonesian Building code from Earthquake with 500 years return period to 2500 years return period. The earthquake records in Indonesia are rare. In this paper Taft earthquake record is used. The calculation of nonlinear response of soil properties was done by finite difference analysis. Viscoelastic, elastoplastic constitutive relations are introduced and the need for using hyperbolic models are mentioned here, nonlinearity is treated by selecting strain compatible soil properties such as shear stiffness and viscous coefficient. Stepwise material properties are taken as the instantaneous slope and assumed to be constant within the given time interval. Case study is hypothesized site in Erdik (1982). The nonlinear analysis is compared with RSNI 03-1726-201X response spectrum for Semarang city. From graphic shown that for period less than 1 sec the response is below of the RSNI 03-1726-201X but for period more than 1 sec the response is more than of RSNI 03-1726-201X.

Analisis respon nonlinear tanah pada kota Semarang saat ini sangat diperlukan. Perubahan peta gempa di peraturan bangunan Indonesia dari peta gempa dengan kala ulang 500 tahun menjadi 2500 tahun mengakibatkan terjadi perubahan pada bentuk respon spektrum. Data rekaman gempa bumi di Indonesia sangat sulit didapatkan. Pada tulisan ini dipakai rekaman dari gempa bumi Taft.Perhitungan respon dinamis nonlinier tanah ditunjukkan dengan menggunakan formulasi beda hingga. Viskoelastik, hubungan konstitutif elastoplastic diperkenalkan dan penggunaan model hiperbolik disebutkan di sini, nonlinier diperlakukan dengan memilih sifat regangan tanah yang kompatibel seperti kekakuan geser dan koefisien kekentalan. Sifat material  tahap demi tahap diambil sebagai kemiringan seketika dan diasumsikan konstan dalam interval waktu tertentu. Untuk studi kasus ini parameter tanah menggunakan data dari Erdik (1982). Hasil dari analisis nonlinear tanah dibandingkan dengan respon spectrum dari RSNI 03-1726-201X untuk kota Semarang. Pada grafik terlihat bahwa respon spectrum analisis terletak dibawah dari grafik respon spectrum RSNI 03-1726-201X. Tetapi pada periode lebih besar dari 1 detik terletak diatas respon spectrum RSNI 03-1726-201X.

Keywords

Nonlinear soil structure; seismic response; Struktur tanah nonlinear; respon gempa; respon dinamika tanah

Full Text:

PDF

References

Martin, P. and Seed, B., 1982. One dimensional dynamic ground response analysis. ASCE Journal Volume: 3. USA.

Joyner, W., 1975. Calculating Nonlinear Seismic Ground Response in Earthquakes. BSSA, Vol 65, No.5. Page: 1315-1336. USA.

Pyke R., 1979. Nonlinear Soil Model for Irregular Cyclic Loadings. Journal ASCE, Vol. 105, No. GT6.

Satoh, T., Sado, T. and Kawase, H., 1995. Nonlinear Behaviour of Soil Sediments Identified by Using Borehole Records Observed at the Ashsigaera Valley, Japan. Journal .S.S.A., Vol. 85, No.6, pp.1821-1834.

Beresnev, I.A., and Wen, K.L., 1995. P-Wave Amplification by Near Surface Deposits at Different Excitation Levels. Journal B.S.S.A, Vol. 95, No. 5, pp. 1490-1494.

Beresnev, I.A., and Wen, K.L., 1996. The possibility of nonlinear path effects in earthquake-induced seismic wave propagation. Journal B.S.S.A, Vol. 86, No.4, pp. 1028-1041.

Hardin, o. and Drenevic., 1972. Shear Modulus and Damping in Soils. Journal ASCE, Vol. 98, No. SM7.

Boore, D.M. and Joyner, W.B., 1993. Estimation of Ground Motion at Deep Sites in Eastern North America. Journal B.S.S.A, 74(5).

Elgamal, W.A, Zeghal, M., Tang, H.T., Stepp, J.C., 1995. Lotung Downhole Array. I: Evaluation of Site Dynamic Properties. Journal A.S.C.E.GT4, Vol.121,April.

Safak,E., 1995. Discrete Time Analysis of Seismic Site Amplification. Journal A.S.C.E,EM7, Vol.121, July.

Safak, E., 1997. Models and Methods to Characterize Site Amplification From a Pair of Records. Journal Earthquake Spectra, Vol. 13, No:1, February.

Ju, G. (et al.),, 1992. On the Characteristics of Nonlinear Soil Response. Journal B.S.S.A, Vol. 83, No. 1, pp. 218-244, February.

Taylor P.W. and Larkin., 1977. Seismic Site Response of Nonlinear Soil Media. Journal A.S.C.E, Vol.104, No.GT3, March..

Zeghal, M., Tang, H.T., Stepp, J.C., 1995. Lotung Downhole Array. II: Evaluation of Soil Nonlinear Properties. Journal A.S.C.E.GT4, Vol.121,April.

Wong, C.W, Ni, Y.Q. and Lau, S.L, 1994. Steady State of Oscillation of Hysterestic Differential Model I; Response Analysis. Journal A.S.C.E., EM11, Vol.120, November.

Joyner, W., 1975. A Method for Calculating Nonlinear Seismic Response in Two Dimensions. Journal B.S.S.A, Vol65, No5, pp.1337-1357, October.

Erdik, M., 1980. Single Degree of Freedom Model for Nonlinear Soil Amplification. Seventh World Conference on Earthquake Engineering. Istanbul, Turkey

Uckan, E. and Erdik, M.,, 1994. Impact Table Simulation of Soil Structure Interaction. Earthquake Resistant Construction and Design Conference. Balkema, Rotterdam.

Zhiliang, W., Qingyu, H. and Gensou, Z., 1980. Wave Propagation Method of Site Response by Visco-elastoplastic Model. Proceedings of the Seventh World Conference on Earthquake Engineering, Volume. 2, September

Departemen Permukiman dan Prasarana Wilayah, Standar Perencanaan Ketahanan Gempa untuk Struktur Bangunan Gedung dan Nongedung, RSNI 03-1726-201x

Tumilar, Steffie Prosedur Analisis Struktur Beton Akibat Gempa Menurut RSNI 03 - 1726-201X, Shortcourse HAKI, 11-12 November 2011, Semarang, Indonesia

Refbacks

  • There are currently no refbacks.