In the current time power has become necessary for everything to run. Power has become a necessary part of our life. Due to increase in population all things in this word are increasing such as industries, homes, schools, factories. That is why we required a lot of power to meet the needs of power.
Selection of Motor rating according to depth and volume of Water
In the current time power has become necessary for everything to run. Power has become a necessary part of our life. Due to increase in population all things in this word are increasing such as industries, homes, schools, factories. That is why we required a lot of power to meet the needs of power. We need to set such a system that could save our energy. Analysts’ calculations show that energy consumption is increasing every day. According to the UN data, incoming 4 decades population of our world will double. Therefore, to meet the needs of the energy crisis there needed a better power system. The main purpose of our project is to select a water pump according to depth and volume to be extracted. In this project we will find the rating of submersible pump according to depth and volume of wate.
This project is about the selection of rated submersible pump according to depth and volume of water and cost analysis. This project can be stated as “Selection of Motor rating according to depth and volume of water requirement .”
This Project is established smart, inexpensive and intelligent for domestic and agriculture.
From this project we will achieve following aims and objects.
1. Reduction of Energy Consumption
2. Reduce the Initial and Running Cost
In fluid dynamics, Total Dynamic Head (TDH) is the total equivalent height that a fluid is to be pumped, taking into account friction losses in the pipe.
We installed our pump for TDH 60ft the height of the Wah Engineering college building. We installed a pump according to our calculations and verify the results. We used the 2 elbows of 90o and PVRC pipe for the pump. We calculated friction loss of this pipe using the friction table and added all the friction loss, vertical rise and water level which is the definition of the TDH.
There are many key features of this study. Our study makes this project more efficient than any ordinary system. It requires less initial to install it. This suggested project is cheaper and more reliable than a traditional water pumping. It is cost effective and work automatically therefore require less maintenance and running cost is also low. Project fulfills all the requirements of electric supply availability and water requirement.
Pumps are being used in every field of life and no one knows the exact ratting of pump that will fulfill their requirement.In agriculture the farmers need large amount of water but due to lack of study they do not know that which pump is suitable for their requirement.So we have suggested through our study the exact pump for their requirement.which will save the intial cost and running cost that make our project more ecnomical.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Pump (0.5HP) | Equipment | 1 | 3000 | 3000 |
| pump(0.75HP) | Equipment | 1 | 4500 | 4500 |
| Drums | Equipment | 2 | 250 | 500 |
| Joints | Equipment | 2 | 50 | 100 |
| Flow rate meter | Equipment | 1 | 500 | 500 |
| Travelling e.t.c | Miscellaneous | 10 | 400 | 4000 |
| Total in (Rs) | 12600 |
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