Document information
- University
- Politecnico di Milano
- Degree programme
- Mechanical Engineering
- Subject
- Meccanica dei Fluidi
- Academic year
- 2020-2021
- Classification
- Exam · Full exam
- Content
- Exam paper only
- Original format
- Text
- Searchable text
Full exam for Meccanica dei Fluidi in the Mechanical Engineering degree programme at Politecnico di Milano. The document covers: Exam of Fluid Mechanics 20 July 2021 Exercise 1 (9 points) These two connected tanks contain fluids with specific weight 1 and 2. Along the vertical, the two fluids are separated by cylinders that can slide frictionless and have specific weight s. The cylinders are also hold
Full exam for Meccanica dei Fluidi in the Mechanical Engineering degree programme at Politecnico di Milano. The document covers: Exam of Fluid Mechanics 20 July 2021 Exercise 1 (9 points) These two connected tanks contain fluids with specific weight 1 and 2. Along the vertical, the two fluids are separated by cylinders that can slide frictionless and have specific weight s. The cylinders are also hold
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Exam of Fluid Mechanics 20 July 2021 Exercise 1 (9 points) These two connected tanks contain fluids with specific weight 1 and 2. Along the vertical, the two fluids are separated by cylinders that can slide frictionless and have specific weight s. The cylinders are also hold by a wire passing over two pulleys. Finally there is a metallic manometer, and the system is in equilibrium as depicted. Knowing: everything except a, find: a. Exercise 2 (9 points) A fluid steadily flows in this system. The tank on the right ha s a finite size. The elevations of the free surfaces are as sketched (Z1<Z2). Knowing all the sketched quantities, the Gibson coefficient for the expanding reach and the outflow coefficient = Cc×Cv, find: the direction of Q1 e Q2; the quantities Z1, Q2, Qe, WP, . Sketch the lines for total head and pressure head Question 1 (6 points) Define the drag coefficient and explain how it depends on roughness for a blunt body Question 2 (6 points) Derive the expression of the tensor for Reynolds stresses ________________________________________________________________________________ A successful student will have at least 12 points in the exercises and at least 6 points in questions. n H h h a = ? D1 D2 1 2 s s P Z1 = ? Z2 Q1 Qe = ? Q2 = ? Ze, De WP = ? = ? m D3 D1, 1 D2, 2 L1 L2 L3 L4 , P Traccia di soluzione Esercizio di statica Equilibrio del cilindro di sinistra sotto l’azione di: peso proprio, spinta da sopra, spinta da sotto, tensione del filo 𝛾 ଵሺ𝐻െ𝑎 ሻ𝜋𝐷ଵ ଶ 4 𝛾௦ℎ 𝜋𝐷ଵ ଶ 4 𝑇ൌ𝑛 𝜋𝐷ଵ ଶ 4 Equilibrio del cilindro di destra, sotto l’azione delle medesime forze 𝛾ଵ𝐻 𝜋𝐷ଶ ଶ 4 𝛾௦ℎ 𝜋𝐷ଶ ଶ 4 𝑇ൌ ሺ𝑛𝛾 ଶ𝑎ሻ𝜋𝐷ଶ ଶ 4 La distanza a si determina uguagliando le due T Esercizio di dinamica La Q2 va verso sinistra per la condizione Z1<Z2. La Q1 va verso destra…
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