Effect of Hydrodynamic Pressure on Saturated Sand Supporting Liquid Storage Tank During the Earthquake
Author(s) -
Ahmed Abdulqader Hussein,
Mohammed A. Al-Neami,
Falah H. Rahil
Publication year - 2021
Publication title -
international journal of engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.213
H-Index - 17
eISSN - 1735-9244
pISSN - 1025-2495
DOI - 10.5829/ije.2021.34.05b.11
Subject(s) - earthquake shaking table , pore water pressure , geotechnical engineering , storage tank , laminar flow , acceleration , settlement (finance) , displacement (psychology) , shear (geology) , mechanics , geology , range (aeronautics) , environmental science , materials science , engineering , composite material , waste management , physics , psychology , computer science , psychotherapist , payment , classical mechanics , world wide web
This paper aims to illuminate the influence of hydrodynamic pressure generated in a water storage tank on the behavior of saturated sand that its support. Experimental tests were performed on two cylindrical water tank models using a fabricated shaking table which consists of a flexible laminar shear box. The first model is a water storage tank partially full of water, and the second one is a tank model with an equivalent load of water pressure to simulate the water storage tank without hydrodynamic pressure. Three earthquake histories (Kobe, El-Centro, and Ali Al Gharbi) were implemented on models to study a varied range of acceleration. It was found that the settlement and lateral displacement directions in the water storage tank were significantly increased compared to the equivalent load resulted in the second model in all cases of the acceleration histories. Also, it was monitored the pore water pressure during the testing period, and it was noticed that the excess pore pressures were affected by the hydrodynamic pressure and increased compared to the results recorded at the condition of no hydrodynamic pressure.
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