It is required to design a submarine prototype for the following conditions: flow velocity (u,) =...
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It is required to design a submarine prototype for the following conditions: flow velocity (u,) = 20 mi/hr. seawater density (pp) = 1025 kg/m³. seawater dynamic viscosity (up) = 1.88 * 10³ kg/(m.s) If a 1/10-scaled model was built to test the submarine design and the total drag force on the model was found to be 50 N under the following conditions: • Testing water density (Pm) = 1000 kg/m³. • Testing water dynamic viscosity (μ₂) = 1.0 * 10³ kg/(m.s) What would be the total drag force on the prototype based on the testing results from the model? It is required to design a submarine prototype for the following conditions: flow velocity (u,) = 20 mi/hr. seawater density (pp) = 1025 kg/m³. seawater dynamic viscosity (up) = 1.88 * 10³ kg/(m.s) If a 1/10-scaled model was built to test the submarine design and the total drag force on the model was found to be 50 N under the following conditions: • Testing water density (Pm) = 1000 kg/m³. • Testing water dynamic viscosity (μ₂) = 1.0 * 10³ kg/(m.s) What would be the total drag force on the prototype based on the testing results from the model?
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Related Book For
Managerial Decision Modeling with Spreadsheets
ISBN: 978-0136115830
3rd edition
Authors: Nagraj Balakrishnan, Barry Render, Jr. Ralph M. Stair
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