Analysis and design of underground water tank

  • How to design an underground tank?

    Underground tanks can be designed as spherical or cylindrical and constructed using bricks.
    Since underground tanks get support from the surrounding ground, thus they can be built with less reinforcing material..

  • How to design ground water tank?

    Design of Base Slab Like the top slab, the base slab is also designed as a simply supported slab with clear spans However, the slab has to carry end moments (0.924 k / and 0.627 k / ) from the cantilever action of the sidewalls; which results in reduction of the midspan maximum moments..

  • What are the four components of design of underground water tank?

    Basic components of underground water tanks are Base slab, Side walls, and Roof slab.
    Tanks are very ductile, enabling to withstand seismic forces and varying water backfill.
    Tanks utilize material efficiently – steel in tension, concrete in compression..

  • What condition for which an underground water tank is designed?

    An underground water tank can also be used as a water reservoir for fire protection, irrigation, and livestock watering.
    The tanks are designed to withstand extreme weather conditions such as strong winds and heavy rains..

  • Which design method is used for the design of water tank?

    Structures like water tanks, chimneys and RC bridges, working stress method is generally adopted.
    Working stress method is adopted as it does not account for the variation of loads and the design is mostly conservative..

  • An underground water tank can also be used as a water reservoir for fire protection, irrigation, and livestock watering.
    The tanks are designed to withstand extreme weather conditions such as strong winds and heavy rains.
  • You can calculate this using the following formula: In this formula, q quantity of water (in liters) needed per day, the t time period required (in days), A area of house/building (square meters).
    This means that the maximum capacity of the water tanks should be at least double the estimated quantity of water usage.
Jul 12, 2020Underground Water Tank (RCC) Objective: 1. Analysis and design of underground water tanks
Duration: 15:54
Posted: Jul 12, 2020
Water tanks are classified on bases of their shapes and position of structure. In this paper, we had discussed about the design of underground water tank of 

How to design underground water tank?

2

DESIGN OF UNDERGROUND WATER TANK Design of Critical Sections

The Model is generated based on the dimensions of the tank

Using the plat cursor select all 4 bottom point to create the surface plate

Selecting the support button the Fix Support is created and assign to 4 Corner of Structure

What are the characteristics of underground tanks?

The design and operating Due to the interaction effects between the principles of underground tanks are the same as flexible structure and the contained liquid, the those of tanks resting on ground

Which software was used to analyze and design underground water tank?

6

CONCLUSIONS The project was aimed on the analysis and design of underground water tank

It was analysis using STADD

PRO using generic loading which proved to be premium software of great potential in analysis and design sections of construction industry

The analysis and design were done according to standard specifications

Analysis and design of underground water tank
Analysis and design of underground water tank
A wildland water tender is a specialized vehicle capable of bringing water, foam, or dry chemicals to fire trucks in the field that are engaged on the fireline.
Water tenders have a large truck mounted tank that carries a minimum 1,000 gallons and up to 4,000 gallons of water.
These vehicles are specifically designed for fire fighting often with four-wheel drive, rugged suspension and high wheel clearance for mountainous dirt road conditions.
According to the National Fire Protection Association, if the apparatus will be used primarily for outdoor and wildland responses, then it is to be considered a wildland fire apparatus and must conform to NFPA 1906.

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