Araştırma Makalesi

Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests

Cilt: 35 Sayı: 3 1 Mayıs 2024
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Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests

Öz

Earthquakes cause cyclic shear deformations in soil and build-up of excessive pore water pressure as a result of undrained loading, accompanied with rearrangement of soil particles and degradation in stiffness of the soil due to decrease in effective stresses. During loading, the onset of soil liquefaction is defined as a stress state in which the excess pore water pressure is equalized to the total stress. From this point of view, assessment of the pore water pressure development pattern under cyclic loading has been one of the most salient research topics in geotechnical and earthquake engineering. In this study, results of a series of cyclic triaxial tests on non-plastic silt specimens consolidated under 100 kPa effective isotropic consolidation pressure were used to question the modelling ability of pore pressure development models previously proposed for sands. Tests were performed on specimens of 6 different initial relative densities (Dr) ranging between 30-80% and 10 different cyclic stress ratios (CSR). The key parameters of pore water pressure development and shear deformation in the energy-based model used are relative density, cyclic stress ratio and number of cycles. The results revealed that, these energy-based models have a strong potential in evaluation of pore water pressure development pattern of non-plastic silts. Test results also show that the increase in relative density and decrease in CSR causes a ladderlike behavior among pore water pressure and cyclic shear strain, which is relevantly rendered by energy-based models.

Anahtar Kelimeler

Kaynakça

  1. Kramer, S. L., Geotechnical earthquake engineering, Prentice-Hall Civil Engineering and Engineering Mechanics Series, Upper Saddle River, NJ: Prentice Hall. 1996.
  2. Towhata, I., Geotechnical earthquake engineering. Berlin Heidelberg: Springer – Verlag, 2008.
  3. Amini, P. F., and Noorzad, R., Energy based evaluation of liquefaction of fiber-reinforced sand using cyclic triaxial testing. Soil Dynamics and Earthquake Engineering, 104, 2018.
  4. Scott, R. F., Principles of soil mechanics, Addison-Wesley, Reading, Mass. 1963.
  5. Lambe, T. W., and Whitman, R. V., Soil mechanics, Wiley, New York. 1969.
  6. Dobry, R., Ladd, R. S., Yokel, F. Y., Chung, R. M., and Powell, D., Prediction of pore-water pressure buildup and liquefaction of sands during earthquakes by the cyclic strain method. National Bureau of Standards Building Science Series 138, National Bureau of Standards, U.S. Dept. of Commerce, Washington, D.C. 1982.
  7. Green, R. A., Mitchell, J. K., and Polito, C. P., An energy-based excess pore-water pressure generation model for cohesionless soils. Proc., John Booker Memorial Symp.- Developments in Theoretical Geomechanics, D. W. Smith and J. P. Carter, eds., Balkema, Rotterdam, Netherlands, 383–390, 2000.
  8. Seed, H.B., Martin, P.P., and Lysmer, J. (1975). The generation and dissipation of pore water pressures during soil liquefaction. Rep. No. EERC 75-26, Univ. of California, Berkeley.

Ayrıntılar

Birincil Dil

İngilizce

Konular

İnşaat Mühendisliği

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

4 Ocak 2024

Yayımlanma Tarihi

1 Mayıs 2024

Gönderilme Tarihi

17 Nisan 2023

Kabul Tarihi

22 Aralık 2023

Yayımlandığı Sayı

Yıl 2024 Cilt: 35 Sayı: 3

Kaynak Göster

APA
Sezer, A., Kumaşdere, Ç., Tanrınıan, N., & Karakan, E. (2024). Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests. Turkish Journal of Civil Engineering, 35(3), 71-94. https://doi.org/10.18400/tjce.1283189
AMA
1.Sezer A, Kumaşdere Ç, Tanrınıan N, Karakan E. Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests. tjce. 2024;35(3):71-94. doi:10.18400/tjce.1283189
Chicago
Sezer, Alper, Çağlar Kumaşdere, Nazar Tanrınıan, ve Eyyüb Karakan. 2024. “Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests”. Turkish Journal of Civil Engineering 35 (3): 71-94. https://doi.org/10.18400/tjce.1283189.
EndNote
Sezer A, Kumaşdere Ç, Tanrınıan N, Karakan E (01 Mayıs 2024) Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests. Turkish Journal of Civil Engineering 35 3 71–94.
IEEE
[1]A. Sezer, Ç. Kumaşdere, N. Tanrınıan, ve E. Karakan, “Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests”, tjce, c. 35, sy 3, ss. 71–94, May. 2024, doi: 10.18400/tjce.1283189.
ISNAD
Sezer, Alper - Kumaşdere, Çağlar - Tanrınıan, Nazar - Karakan, Eyyüb. “Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests”. Turkish Journal of Civil Engineering 35/3 (01 Mayıs 2024): 71-94. https://doi.org/10.18400/tjce.1283189.
JAMA
1.Sezer A, Kumaşdere Ç, Tanrınıan N, Karakan E. Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests. tjce. 2024;35:71–94.
MLA
Sezer, Alper, vd. “Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests”. Turkish Journal of Civil Engineering, c. 35, sy 3, Mayıs 2024, ss. 71-94, doi:10.18400/tjce.1283189.
Vancouver
1.Alper Sezer, Çağlar Kumaşdere, Nazar Tanrınıan, Eyyüb Karakan. Energy-Based Assessment of Liquefaction Behavior of a Non-Plastic Silt Based on Cyclic Triaxial Tests. tjce. 01 Mayıs 2024;35(3):71-94. doi:10.18400/tjce.1283189

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