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High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures
Öz
The surrounding soils at energy geo-structures must perform for a long time under high temperatures and thermal cycles. Engineering properties of soils are affected by temperature. Pumice is a thermally durable material and it may be used to increase thermal durability of soils. For this reason, it was aimed to develop thermally durable soil material by adding pumice additive to sand-bentonite mixtures. 10% and 20% pumice were added to 10% and 20% sand-bentonite mixtures and compaction, consolidation, direct shear and hydraulic conductivity tests were performed. The direct shear and hydraulic conductivity tests were performed both at room temperature and 80 °C. The consolidation test results showed that as pumice content increases the total vertical deformation decreased at room temperature. Pumice additive reduced the maximum shear stress values when temperature increased for 10B-90S mixtures. However, the pumice additive increased the internal friction angle of the mixtures at high temperature. It was observed that the hydraulic conductivity increased with increasing temperature. Thermal conductivity measurements showed that pumice additive reduced the thermal conductivity value of the mixtures.
Anahtar Kelimeler
Proje Numarası
217M553
Kaynakça
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- Laloui, L., Thermo-Mechanical Behaviour of Soils. Revue Française de Génie Civil. 5:6, 809-843, 2001. DOI: 10.1080/12795119.2001.9692328
- Abuel-Naga, H.M., Bergado, D.T. and Bee Fong Lim., Effect of Temperature on Shear Strength and Yielding Behavior of Soft Bangkok Clay. Soils and Foundations. Volume 47, 3,423-436, 2007.
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Ayrıntılar
Birincil Dil
İngilizce
Konular
İnşaat Mühendisliği
Bölüm
Araştırma Makalesi
Erken Görünüm Tarihi
20 Eylül 2023
Yayımlanma Tarihi
1 Ocak 2024
Gönderilme Tarihi
18 Ocak 2023
Kabul Tarihi
8 Eylül 2023
Yayımlandığı Sayı
Yıl 2024 Cilt: 35 Sayı: 1
APA
Güneri, E., & Yukselen Aksoy, Y. (2024). High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures. Turkish Journal of Civil Engineering, 35(1), 41-62. https://doi.org/10.18400/tjce.1239009
AMA
1.Güneri E, Yukselen Aksoy Y. High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures. tjce. 2024;35(1):41-62. doi:10.18400/tjce.1239009
Chicago
Güneri, Esra, ve Yeliz Yukselen Aksoy. 2024. “High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures”. Turkish Journal of Civil Engineering 35 (1): 41-62. https://doi.org/10.18400/tjce.1239009.
EndNote
Güneri E, Yukselen Aksoy Y (01 Ocak 2024) High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures. Turkish Journal of Civil Engineering 35 1 41–62.
IEEE
[1]E. Güneri ve Y. Yukselen Aksoy, “High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures”, tjce, c. 35, sy 1, ss. 41–62, Oca. 2024, doi: 10.18400/tjce.1239009.
ISNAD
Güneri, Esra - Yukselen Aksoy, Yeliz. “High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures”. Turkish Journal of Civil Engineering 35/1 (01 Ocak 2024): 41-62. https://doi.org/10.18400/tjce.1239009.
JAMA
1.Güneri E, Yukselen Aksoy Y. High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures. tjce. 2024;35:41–62.
MLA
Güneri, Esra, ve Yeliz Yukselen Aksoy. “High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures”. Turkish Journal of Civil Engineering, c. 35, sy 1, Ocak 2024, ss. 41-62, doi:10.18400/tjce.1239009.
Vancouver
1.Esra Güneri, Yeliz Yukselen Aksoy. High Temperature Effect on the Engineering Performance of Pumice Added Sand-Bentonite Mixtures. tjce. 01 Ocak 2024;35(1):41-62. doi:10.18400/tjce.1239009