| dc.description.abstract |
Shower tester booths are used in the automotive industry for leakage tests and to verify the
water tightness of fully manufactured and assembled vehicles. By simulating real-world rain
conditions, water is sprayed at the vehicle as part of a quality control procedure. Pragoti
Industries Ltd. currently has a shower tester booth for testing Cars/SUVs, which will be
modified to make it compatible for Bus testing. In the existing Car/SUV shower tester, the
shower testing is done by placing the vehicle above 5 bar water pressure, whereas the standard
pressure should be maintained between 2-2.5bar in order to avoid the disadvantages of
excessive pressure on vehicles. During the modifications for Bus testing, a theoretical issue
arose where negative pressure (calculated to be between 2-2.5 bar) could develop. To resolve
this, centrifugal pumps will be used to ensure proper water distribution as well as Standard
Pressure. The existing Car/SUV shower tester is equipped with flat fan nozzles and primarily
use gate valves. In the modified version for Bus testing brass gate valves, glove valves, ball
valves, pressure gauges and full cone nozzles will be introduced to improve performance. The
transmission pipes in the shower tester booth, with diameters of 1.5, 3, and 5 inches, are crucial
as they form the backbone of the water distribution system. Additionally, several pressure
gauges will be installed to measure the water pressure within the system, providing real-time
data on the force exerted by the water as it flows through pipes, valves, and other equipment.
To accommodate the Bus testing, a modified structural design have to be fabricated, using some
existing older resources and adding new equipment where necessary. New control and
maintenance components need to be installed, and electrical connections have to be checked to
ensure proper functionality. Various calculations were performed for both the existing SUV
shower tester and the modified Bus shower tester, including flow rate, head loss, power
consumption, water pressure, and water consumption. The operating cost for the modified
shower tester was calculated to be between 18-22.5 taka (or 0.18-0.22 dollars) for 4-5 minutes
of testing. Simulations were conducted using ANSYS for both the older and modified shower
testers. These simulations provided valuable insights into the performance variations such as
nozzle pressure and pipe flow pressure between the Bus and SUV configurations. For SUV
shower tester the simulation showed nozzle pressure around 2 bars. Besides the simulation for
Bus shower tester showed the pressure in nozzles around 2.2 bars. These results helped to
optimize the shower tester for testing both vehicle types, ensuring structural integrity and
operational efficiency under various operating conditions. |
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