Positive Displacement Machines: Modern Design Innovations and Tools
Editat de Ibrahim A. Sultan, Truong H. Phungen Limba Engleză Paperback – aug 2019
- Explains how these machines work on a fundamental level, helping the reader build a holistic understanding which aids complex problem- solving
- Describes how to mathematically model the performance of pumps, compressors and gas expanders
- Provides advice on how to design and optimize positive displacement machines to match a given application
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Specificații
ISBN-13: 9780128169988
ISBN-10: 0128169982
Pagini: 468
Ilustrații: Approx. 350 illustrations
Dimensiuni: 152 x 229 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128169982
Pagini: 468
Ilustrații: Approx. 350 illustrations
Dimensiuni: 152 x 229 mm
Greutate: 0.62 kg
Editura: ELSEVIER SCIENCE
Cuprins
Part 1 Geometric innovation in positive displacement machines
1. The orbital displacer: Implications and applications
2. Cardiac action pumps and motors
3. Geometric design of the limac¸on machine
4. The geometrical problem in the positive displacement scroll machines
5. Screw compressors and expanders
Part 2 Mechanismanalysis for positive displacement machines
6. Improving torque performance in reciprocating compressors via asymmetric stroke characteristics
7. Variable compression ratio at internal combustion engine
8. Dynamic modelling and design of bent axis pumps
9. Numerical analyses of THD lubrication and dynamics of rolling piston and bearings in a rotary compressor
10. Dynamic characteristics of rolling piston machines
Part 3 Tools for analysis: Mathematical modelling and CFD
11. Mathematical modelling for positive displacement expanders
12. Mesh handling for the CFD simulation of external gear pumps
13. Combining lumped parameter modelling and CFD analysis for the pressure ripple estimation of tandem gear pumps
14. Analytical, numerical and experimental approaches to improving the performance indices of an orbital hydraulic motor
15. Modelling of twin-screw machines by use of CFD
1. The orbital displacer: Implications and applications
2. Cardiac action pumps and motors
3. Geometric design of the limac¸on machine
4. The geometrical problem in the positive displacement scroll machines
5. Screw compressors and expanders
Part 2 Mechanismanalysis for positive displacement machines
6. Improving torque performance in reciprocating compressors via asymmetric stroke characteristics
7. Variable compression ratio at internal combustion engine
8. Dynamic modelling and design of bent axis pumps
9. Numerical analyses of THD lubrication and dynamics of rolling piston and bearings in a rotary compressor
10. Dynamic characteristics of rolling piston machines
Part 3 Tools for analysis: Mathematical modelling and CFD
11. Mathematical modelling for positive displacement expanders
12. Mesh handling for the CFD simulation of external gear pumps
13. Combining lumped parameter modelling and CFD analysis for the pressure ripple estimation of tandem gear pumps
14. Analytical, numerical and experimental approaches to improving the performance indices of an orbital hydraulic motor
15. Modelling of twin-screw machines by use of CFD