A steady flow of water jet (p = 1000 kg/m) is moving with a velocity of...
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A steady flow of water jet (p = 1000 kg/m³) is moving with a velocity of U₁ = 30 m/s and a mass flow rate of 10 kg/s towards a moving vane. It is impinging on the moving vane as shown in Figure 1.28. The moving vane has an internal angle of 100° and is moving with a velocity of 12 m/s along the x-axis. Due to friction loss, the relative velocity is reduced by 10% after passing through the moving vane. The whole system is exposed to atmospheric pressure. Determine the force exerting on the curved moving vane by the water jet assume negligible gravitational effect. Water Jet, U₁ = 30 m/s V₁ V₂ 100° Moving Vane u = 12 m/s A steady flow of water jet (p = 1000 kg/m³) is moving with a velocity of U₁ = 30 m/s and a mass flow rate of 10 kg/s towards a moving vane. It is impinging on the moving vane as shown in Figure 1.28. The moving vane has an internal angle of 100° and is moving with a velocity of 12 m/s along the x-axis. Due to friction loss, the relative velocity is reduced by 10% after passing through the moving vane. The whole system is exposed to atmospheric pressure. Determine the force exerting on the curved moving vane by the water jet assume negligible gravitational effect. Water Jet, U₁ = 30 m/s V₁ V₂ 100° Moving Vane u = 12 m/s
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