Results 241 to 250 of about 6,203 (293)
Investigating the cooling effect of the inlet flow on the axial compressor performance in different operating conditions. [PDF]
Abbasi S, Salmani M.
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1982
In the early days of turbochargers, axial flow turbines were used exclusively, assisted by experience gained from aircraft gas turbine technology after 1945. Indeed, it was largely turbine blade material developments, pioneered for gas turbines, that made diesel engine turbochargers practicable.
N. Watson, M. S. Janota
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In the early days of turbochargers, axial flow turbines were used exclusively, assisted by experience gained from aircraft gas turbine technology after 1945. Indeed, it was largely turbine blade material developments, pioneered for gas turbines, that made diesel engine turbochargers practicable.
N. Watson, M. S. Janota
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Secondary Flows in Axial Turbines—A Review
Annals of the New York Academy of Sciences, 2001Abstract: An important problem that arises in the design and the performance of axial flow turbines is the understanding, analysis, prediction and control of secondary flows. Sieverding1 has given a review of secondary flow literature, covering up to 1985.
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1979
There are several distinctive types of axial turbine including both impulse and reaction, single and velocity compounded.
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There are several distinctive types of axial turbine including both impulse and reaction, single and velocity compounded.
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Preliminary Design of Axial Flow Turbines
2020With reference to an axial turbine stage, a procedure for the calculation of kinematic parameters at mean diameter (Sect. 3.1), thermodynamic parameters (Sect. 3.2), geometric parameters (Sect. 3.3), parameters in the radial direction (Sect. 3.4) and stage losses (Sect. 3.5) is provided. Then, Sect.
Marco Gambini, Michela Vellini
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Performance Estimation of Axial Flow Turbines
Proceedings of the Institution of Mechanical Engineers, 1970A comprehensive method of estimating the performance of axial flow steam and gas turbines is presented, based on analysis of linear cascade tests on blading, on a number of turbine test results, and on air tests of model casings. The validity of the use of such data is briefly considered.
H. R. M. Craig, H. J. A. Cox
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Performance of Axial-Flow Turbines
Proceedings of the Institution of Mechanical Engineers, 1948The advent of the gas-turbine engine, with its absolute dependence on high component efficiencies for reasonable economic operation, and the necessity for new materials which will withstand high stresses at much greater temperatures than encountered on steam turbines, has led engineers to review the design of turbines closely both from an aerodynamic ...
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Secondary Flows and Losses in Axial Flow Turbines
Journal of Engineering for Power, 1982A simple approach to the estimation of angle variation and losses produced by the secondary flows near the hub and casing of a turbine is presented. The angle variation is predicted by ‘classical’ secondary flow theory, and the loss by estimating three components of the loss and adding them together.
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On the Aerodynamic Design of Axial-Flow Compressors and Turbines
Journal of Applied Mechanics, 1948Abstract In this paper a theoretical method is presented to determine the flow of a perfect (frictionless, incompressible) fluid across a cascade built up of arbitrary airfoils. The presentation refers to compressor blading but is immediately applicable to turbine blading.
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