A Study and Design of Radial Turbomachinery Blading in Three-dimensional Flow

A Study and Design of Radial Turbomachinery Blading in Three-dimensional Flow PDF Author: Wahid Safwar Shafik Ghaly
Publisher:
ISBN:
Category :
Languages : en
Pages : 332

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A Study and Design of Radial Turbomachinery Blading in Three-dimensional Flow

A Study and Design of Radial Turbomachinery Blading in Three-dimensional Flow PDF Author: Wahid Safwar Shafik Ghaly
Publisher:
ISBN:
Category :
Languages : en
Pages : 332

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Three-Dimensional Flow in Radial Turbomachinery and Its Impact on Design

Three-Dimensional Flow in Radial Turbomachinery and Its Impact on Design PDF Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
ISBN: 9781792948770
Category :
Languages : en
Pages : 32

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Book Description
In the two papers on the 'Theory of Blade Design for Large Deflections' published in 1984, a new inverse design technique was presented for designing the shape of turbomachinery blades in three-dimensional flow. The technique involves the determination of the blade profile from the specification of a distribution of the product of the radius and the pitched averaged tangential velocity (i.e., r bar-V(sub theta), the mean swirl schedule) within the bladed region. This is in contrast to the conventional inverse design technique for turbomachinery blading in two dimensional flow in which the blade surface pressure or velocity distribution is specified and the blade profile determined as a result; this is feasible in two-dimensional flow because the streamlines along the blade surfaces are known a priori. However, in three-dimensional flow, the stream surface is free to deform within the blade passage so that the streamlines on the blade surfaces are not known a priori; thus it is difficult and not so useful to prescribe the blade surface pressure or velocity distribution and determine the resulting blade profile. It therefore seems logical to prescribe the swirl schedule within the bladed region for designing a turbomachinery blade profile in three-dimensional flow. Furthermore, specifying r bar-V(sub theta) has the following advantages: (1) it is related to the circulation around the blade (i.e., it is an aerodynamic quantity); (2) the work done or extracted is approximately proportional to the overall change in r bar-V(sub theta) across a given blade row (Euler turbine equation); and (3) the rate of change of r bar-V(sub theta) along the mean streamline at the blade is related to the pressure jump across the blade and therefore the blade loading. Since the publications of those two papers, the technique has been applied to the design of a low speed as well as a high speed radial inflow turbine (for turbocharger applications) both of which showed definite improvements...

Aerodynamic Design of Turbomachinery Blading Three-dimensional Flow: an Application to Radial Inflow Turbines

Aerodynamic Design of Turbomachinery Blading Three-dimensional Flow: an Application to Radial Inflow Turbines PDF Author: Massachusetts Institute of Technology. Gas Turbine Laboratory
Publisher:
ISBN:
Category :
Languages : en
Pages : 65

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A Parametric Study of Radial Turbomachinery Blade Design in Three-dimensional Subsonic Flow

A Parametric Study of Radial Turbomachinery Blade Design in Three-dimensional Subsonic Flow PDF Author: W. S. Ghaly
Publisher:
ISBN:
Category : Blades
Languages : en
Pages : 0

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A Design Study of Radial Inflow Turbines in Three-dimensional Flow

A Design Study of Radial Inflow Turbines in Three-dimensional Flow PDF Author: Yi-Lung Yang
Publisher:
ISBN:
Category :
Languages : en
Pages : 316

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Turbomachinery Performance Analysis

Turbomachinery Performance Analysis PDF Author: R. I. Lewis
Publisher: Butterworth-Heinemann
ISBN: 0080543324
Category : Technology & Engineering
Languages : en
Pages : 328

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Book Description
This modern overview to performance analysis places aero- and fluid-dynamic treatments, such as cascade and meridional flow analyses, within the broader context of turbomachine performance analysis. For the first time ducted propellers are treated formally within the general family of turbomachines. It also presents a new approach to the use of dimensional analysis which links the overall requirements, such as flow and head, through velocity triangles to blade element loading and related fluid dynamics within a unifying framework linking all aspects of performance analysis for a wide range of turbomachine types. Computer methods are introduced in the main text and a key chapter on axial turbine performance analysis is complemented by the inclusion of 3 major computer programs on an accompanying disc. These enable the user to generate and modify design data through a graphic interface to assess visually the impact on predicted performance and are designed as a Computer Aided Learning Suite for student project work at the professional designer level. Based on the author's many years of teaching at degree level and extensive research experience, this book is a must for all students and professional engineers involved with turbomachinery.

A Design Study of Radial Inflow Turbines with Splitter Blades in Three-dimensional Flow

A Design Study of Radial Inflow Turbines with Splitter Blades in Three-dimensional Flow PDF Author: William Djaja Tjokroaminata
Publisher:
ISBN:
Category :
Languages : en
Pages : 240

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A Fully Compressible Three Dimensional Inverse Design Method Applicable to Radial and Mixed Flow Turbomachines

A Fully Compressible Three Dimensional Inverse Design Method Applicable to Radial and Mixed Flow Turbomachines PDF Author: Mehrdad Zangeneh
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 0

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Book Description
A fully three dimensional compressible inverse design method for the design of radial and mixed flow machines is described. In this method the distribution of the circumferentially averaged swirl velocity, or r V̄ Ø on the meridional geometry of the impeller is prescribed and the corresponding blade shape is computed iteratively. Two approaches are presented for solving the compressible flow problem. In the approximate approach, the pitchwise variation in density is neglected and as a result the algorithm is simple and efficient. In the exact approach, the velocities and density are computed throughout the three dimensional flow field by employing Fast Fourier Transform in the tangential direction. The results of the approximate and exact approach are compared for the case of a high speed (subsonic) radial-inflow turbine and it is shown that the difference between the blade shapes computed by the two methods is well within the manufacturing tolerances. The flow through the designed impeller is analysed by using three dimensional inviscid and viscous time marching programs and very good correlations between the specified and computed r V̄ Ø is obtained.

NASA Technical Memorandum

NASA Technical Memorandum PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 492

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Inverse Design of Turbomachinery Blading for Arbitrary Blade Thickness in Three-dimensional Transonic Flow

Inverse Design of Turbomachinery Blading for Arbitrary Blade Thickness in Three-dimensional Transonic Flow PDF Author: Y. L. Lang
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
Presented at the International Gas Turbine & Aeroengine Congress & Exhibition, Orlando, FL, Jun 2 - Jun 5, 1997.