step by step explanation please 1, A jet of fluid issues from a 50 mm diameter...
Q8 A horizontal pipe 50 mm diameter is fitted with a venturi tube, which has a throat diameter of 40 mm. The pipe carries water at a pressure of 30 kPa gauge and velocity 3 m/s upstream of the throat. Determine: a. The mass flow rate; b. The velocity at the throat C. The pressure at the throat ignoring head losses: d. The pressure at the throat if a head loss equal to 5% of the total head occurs as...
help Fluid enters to the section of the pipe as shown in the figure below. Density and dynamic viscosity of the fluid are 1000 kg/mº and 8.90 x 10-4 Pa's respectively. A pressure of the fluid at point A is 30 kPa and diameter of the pipe is 100 mm. Find the volumetric flow rate of the fluid at B. Flow is laminar and viscous, consider the pressure loss. 4 m B 100 mm
A 150 mm diameter jet of water is discharged from nozzle. The velocity of the jet is 36m/s. Find the power of the jet
The Jet of fluid strikes the plate and compresses the spring L=4 mm. It is known that the spring constant k =1000 N/mm, the velocity of the stress v = 4 m/s and the volumetric flow rate Q = 0.70 m^3/s. Determine the density of the fluid in kg/m^3.
In a section of horizontal pipe with a diameter of 4.0 cm, the pressure is 47 kPa and water is flowing with a speed of 2.0 m/s. The pipe narrows to 2.0 cm. What is the pressure in the narrower region? Treat the water as an ideal incompressible fluid. The density of water is 1000 kg/m3 . (1 kPa = 1000 Pa)
Determine the velocity of fluid in m/s at the throat (ie at smaller diameter of the pipe), if the flow is coming from left to right in a system as shown below Specific gravity of the flowing fluid is 1.2. Density of water is 1000 kg/m3 P1 = 735 kPa P2 = 550 kPa Flow Direction 31 mm 19 mm 215 0.225 0598 0.000
step by step explanation please 2. A reducing pipe bend turns a water flow of 60 litre/s through 60° in a horizontal plane. The pipe inlet diameter is 100 mm while the exit diameter is 60 mm. If the water pressure in the inlet plane is 300 kPa (abs), use Bernoulli's equation to calculate the pressure in the exit plane 104.0 kPa (abs) ] Find the magnitude and direction of the force exerted on the bend by the water. (Take...
Please show all work. 3 Above is pictured a large tank that is ejecting fluid from a nozzle into a free jet of fluid that strikes a yane. The vane is attached to 2 springs that resist the motion of the vane due to the striking fluid, and the vane's orientation remains the same (i.e. there is no angular deflection) At point 2 the free jet has a diameter of D2 and at point 3 the free jet has a...
Question 16 Determine the velocity of fluid in m/s at the throat (.e at smaller diameter of the pipe), if the flow is coming from left to right in a system as shown below. Specific gravity of the flowing fluid is 1.2. Density of water is 1000 kg/m3 Pi 735 kPa P2 = 550 kPa Flow Direction 31 mm 19 mm 21.5 0.225 0.598 0.006
Question 16 Determine the velocity of fluid in m/s at the throat (i.e at smaller diameter of the pipe), if the flow is coming from left to right in a system as shown below. Specific gravity of the flowing fluid is 1.2. Density of water is 1000 kg/m3 P1 = 735 kPa P2 = 550 kPa Flow Direction 31 mm 19 mm 21.5 0.225 0.598 0.006