Time History Analysis of Circular and Rectangular Elevated Water Storage Tank using Baffle Wall

Authors

  • Sagar T.Mane PG Student, Department of Civil/Structure, Trinity College of Engineering and Research, Pune, INDIA
  • Prof. Prashant M. Kulkarni Professor, Department of Civil/Structure, Trinity College of Engineering and Research, Pune, INDIA

DOI:

https://doi.org/10.31033/ijemr.9.4.2

Keywords:

Elevated Water Tanks, Time History Analysis, Baffle Wall, SAP 2000

Abstract

In the world, there are large number of storage tanks which are used as water and oil storage facilities. Elevated water tank is one of the most important structures in earthquake event. As known from very upsetting experiences, elevated water tanks were heavily damaged or collapsed during earthquake Hence different configurations of liquid storage tanks have been constructed. Water tanks are play an important role in municipal water supply and firefighting systems. Due to post earthquake useful desires, seismic safety of water tanks is most important. In the current study time history analysis of rectangular and circular elevated water storage tank were analyzed using SAP 2000 software. In this study the concrete baffle wall was used to reduce sloshing effect of the water tank. The tank responses such as maximum nodal displacement, base shear and result were compared for empty and full tank water fill condition. From IS 11682:1985provision when seismic loading is considered only two cases may be taken one is tank empty condition and other is tank full condition. Finally, study discloses the importance of suitable supporting baffle wall to remain withstand against heavy damages of circular and rectangular elevated water tanks during earthquake. As per IITK-GSDMA guidelines for seismic design of liquid storage tanks, hydrodynamic pressure for impulsive and convective mode was calculated.

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Published

2019-08-31

How to Cite

Sagar T.Mane, & Prof. Prashant M. Kulkarni. (2019). Time History Analysis of Circular and Rectangular Elevated Water Storage Tank using Baffle Wall. International Journal of Engineering and Management Research, 9(4), 6–10. https://doi.org/10.31033/ijemr.9.4.2