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Additional resources for Aircraft Hydraulics Manual - Ju-88 A-4 Werkschrift, Teil 9C, [Hydraulische Anlage]

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Angew. Math. u. , 8, 372. Constant, H. (1939). Performance of cascades of aerofoils. Royal Aircraft Est. Note No. E3696 and ARC Rep. No. 4155. 54 CHAPTER 3. L. (1978). Fluid mechanics, thermodynamics of turbomachinery. Pergamon Press. Eckardt, D. (1976). Detailed flow investigations with a high-speed centrifugal compressor impeller. ASME J. , 98, 390–420. B. (1963). The centrifugal compressor stage. Butterworth, London. Fischer, K. and Thoma, D. (1932). Investigation of the flow conditions in a centrifugal pump.

1981). Turbomachines. A guide to design, selection and theory. John Wiley and Sons, New York. J. G. (1989). Fluid flow (3rd edition), Chapters 12 and 13. Macmillan Publ. Co. Stodola, A. (1927). Steam and gas turbines. Volumes I and II. McGraw-Hill, New York. 1 INTRODUCTION In this and the following chapter, we briefly survey the more detailed analyses of the flow in axial and centrifugal pumps, and provide a survey of some of the models used to synthesize the noncavitating performance of these turbomachines.

Eng. for Power, 89, 558–576. F. (1947). Fluid mechanics of turbomachinery. McGraw-Hill, New York. 56 CHAPTER 3. 1 INTRODUCTION In this chapter we briefly survey some of the other important features of the flows through turbomachines. We begin with a section on the three-dimensional characteristics of flows, and a discussion of some of the difficulties encountered in adapting the cascade analyses of the last chapter to the complex geometry of most turbomachines. 2 THREE-DIMENSIONAL FLOW EFFECTS The preceding chapter included a description of some of the characteristics of two-dimensional cascade flows in both the axial and radial geometries.

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