Download Fundamentals of Gas Dynamics by Robert D. Zucker, Oscar Biblarz PDF

By Robert D. Zucker, Oscar Biblarz

Offers all important equations, tables, and charts in addition to self tests.* incorporated chapters hide response propulsion structures and actual fuel effects.* Written and arranged in a fashion that makes it obtainable for self studying.

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Is any real process ever completely reversible? 23. What are some effects that cause processes to be irreversible? 24. What is an adiabatic process? An isothermal process? An isentropic process? 25. Give equations that define enthalpy and entropy. 26. Give differential expressions that relate entropy to (a) internal energy and (b) enthalpy. 27. Define (in the form of partial derivatives) the specific heats cv and cp . Are these expressions valid for a material in any state? 28. State the perfect gas equation of state.

Diameter duct the average velocity of water is 14 ft/sec. (a) What is the average velocity if the diameter changes to 6 in.? (b) Express the average velocity in terms of an arbitrary diameter. 6. Nitrogen flows in a constant-area duct. Conditions at section 1 are as follows: p1 = 200 psia, T1 = 90°F, and V1 = 10 ft/sec. At section 2, we find that p2 = 45 psia and T2 = 90°F. Determine the velocity at section 2. 7. Steam enters a turbine with an enthalpy of 1600 Btu/lbm and a velocity of 100 ft/sec at a flow rate of 80,000 lbm/hr.

State the basic concepts from which a study of gas dynamics proceeds. 2. Explain one-, two-, and three-dimensional flow. 23 24 CONTROL VOLUME ANALYSIS—PART I 3. Define steady flow. 4. (Optional) Compute the flow rate and average velocity from a multidimensional velocity profile. 5. Write the equation used to relate the material derivative of any extensive property to the properties inside, and crossing the boundaries of, a control volume. Interpret in words the meaning of each term in the equation. 6.

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