Q1) Water flows in a pipe branch installed vertically, as shown in Figure 1. The pipe branch is supported from moving by using an anchor block. The anchor block is able to hold the pipe in y-direction. Determine the minimum branch angle, 0, that is able to withstand the movement in x-direction, given the horizontal force component of the anchor block is Rx= 5.5 kN. Ignore major and minor losses in your calculation. 0₂: = 0.25 m 2 P₂ = ? kPA 0₁ = 0.4 m P₁ = 360 kPA Q₂ = 0.24 m³/s Q₁ = 0.73 m³/s V₁ +у + X 1 03 03 = 0.65 m P3 = ? kPA Q3 = ? m³/s 0/2 0/2 V₂ Rx 3 0.7 m 0.7 m

Elements Of Electromagnetics
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Q1) Water flows in a pipe branch installed vertically, as shown in Figure 1. The pipe branch
is supported from moving by using an anchor block. The anchor block is able to hold
the pipe in y-direction. Determine the minimum branch angle, 0, that is able to
withstand the movement in x-direction, given the horizontal force component of the
anchor block is Rx= 5.5 kN. Ignore major and minor losses in your calculation.
0₂:
= 0.25 m
2
P₂ = ? kPA
0₁ = 0.4 m
P₁ = 360 kPA
Q₂ = 0.24 m³/s
Q₁ = 0.73 m³/s
V₁
+у
+ X
1
03
03 = 0.65 m
P3 = ? kPA
Q3 = ? m³/s
0/2
0/2
V₂
Rx
3
0.7 m
0.7 m
Transcribed Image Text:Q1) Water flows in a pipe branch installed vertically, as shown in Figure 1. The pipe branch is supported from moving by using an anchor block. The anchor block is able to hold the pipe in y-direction. Determine the minimum branch angle, 0, that is able to withstand the movement in x-direction, given the horizontal force component of the anchor block is Rx= 5.5 kN. Ignore major and minor losses in your calculation. 0₂: = 0.25 m 2 P₂ = ? kPA 0₁ = 0.4 m P₁ = 360 kPA Q₂ = 0.24 m³/s Q₁ = 0.73 m³/s V₁ +у + X 1 03 03 = 0.65 m P3 = ? kPA Q3 = ? m³/s 0/2 0/2 V₂ Rx 3 0.7 m 0.7 m
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