Heating, ventilating, and air conditioning
Analysis and design
Faye C. McQuiston, Jerald D. Parker, Jeffrey D. Spitler
Résumé
Dr. Jeffrey D. Spittler makes his debut in this edition as
the third author; his two older colleagues welcome him and
express their appreciation for his contributions to this
work. Jeff has done a significant part of the revising of
the new material on load calculation methods (Chapter 8)
and energy calculations (Chapter 9). In addition his
suggestions have resulted in several important changes in
other chapters.
The text is intended for undergraduate and graduate
engineering students who have completed basic courses in
thermodynamics, heat transfer, fluid mechanics, and
dynamics. Although the book is intended primarily for
teaching, it may also be useful to practicing engineers as
a reference. There is sufficient material for two-semester
courses with latitude in course make-up.
A number of revisions have been based on suggestions from
users of previous editions. Data and references have been
updated throughout the text; however, in a few instances,
useful material from older sources has been retained. Some
new problems have been added, some deleted, and others
revised. In all major areas problems are given for solution
using a computer.
A major addition to the text is a package of computer
programs, on CD, that cover psychrometrics, load
calculations, piping design, duct design, and coil
simulation. These programs are all Windows-friendly.
Chapter 2, Air-Conditioning Systems, has been revised to
add material on boilers, ground-coupled systems, and
thermal storage.
Chapter 8, The Cooling Load, has undergone a complete
revision to reflect the latest load calculation methods and
the demise of hand calculation methods.
Chapter 10, Flow, Pumps, and Piping Design, has new
material relating to air elimination, and a section has
been added on low-pressure steam system design.
Many other revisions have been made to clarify examples and
discussion. Tabular material has been updated from the
latest ASHRAE Handbook where needed.
Computers are commonplace in the modern education system,
and instructors are encouraged to involve students in their
use in system design. However, the authors also believe
that students should first understand the basic principles
and input required for a given program. The enclosed
programs closely follow the theory given herein.
It appears that a complete conversion from English (IP) to
the international (SI) system of units will not soon, if
ever, occur in the United States. However, engineers should
be comfortable with both systems of units when they enter
practice. Therefore, this text continues to use them both,
with emphasis placed on the English system. Instructors may
blend the two systems as they choose.
Contents
- Introduction
- Air-Conditioning Systems
- Moist Air properties and Conditioning Processes
- Comfort and Health - Indoor Environmental Quality
- Heat Transmission in Building Structures
- Solar Radiations
- Space Heating Load
- The Cooling Load
- Energy Calculations
- Flow, Pumps, and Piping Design
- Space Air Diffusion
- Fans and Building Air Distribution
- Direct Contact Heat and Mass transfer
- Extended Surface Heat Exchangers
- Refrigeration
- Thermophysical Properties
- Weather Data
- Pipe and Tube Data
- Useful Data
L'auteur - Faye C. McQuiston
Faye C. McQuiston is professor emeritus of Mechanical and Aerospace Engineering at Oklahoma State University, Stillwater, Oklahoma. He received B.S. and M.S. degrees in mechanical engineering from Oklahoma State University in 1958 and 1959 and a Ph.D. in mechanical engineering from Purdue University in 1970. Dr. McQuiston is a registered professional engineer and a consultant to several system design and equipment manufacturing firms. He is active in research related to the design of heating and air-conditioning systems, particularly heat-exchanger design and simulation and load calculations. He has written extensively on heating and air conditioning and is the co-author of a basic fluid mechanics and heat transfer text.
L'auteur - Jerald D. Parker
Jerald D. Parker is a professor emeritus of mechanical engineering at Oklahoma Christian University after serving 33 years on the mechanical engineering faculty at Oklahoma State University. He received B.S. and M.S. degrees in mechanical engineering from Oklahoma State University in 1955 and 1958 and a Ph.D. in mechanical engineering from Purdue University in 1961. In ASHRAE he has served as chairman of the Technical Committee on Fluid Mechanics and Heat Transfer, chairman of a standards project committee, and a member of the Continuing Education Committee. He is a registered professional engineer.
L'auteur - Jeffrey D. Spitler
Jeffrey D. Spitler is a professor of mechanical and aerospace engineering at Oklahoma State University, Stillwater. He received B.S., M.S., and Ph.D. degrees in mechanical engineering at the University of Illinois, Urbana-Champaign, in 1983, 1984, and 1990. He joined the Oklahoma State University faculty in 1990. He is an active member of ASHRAE and has served on several technical committees, a standards committee, and the Student Activities Committee. He also serves on the board of directors of the International Building Performance Simulation Association. He is a registered professional engineer and has consulted on a number of different projects. He is actively involved in research related to design load calculations, ground source heat pump systems, and pavement heating systems.
Caractéristiques techniques
PAPIER | |
Éditeur(s) | Wiley |
Auteur(s) | Faye C. McQuiston, Jerald D. Parker, Jeffrey D. Spitler |
Parution | 01/06/2000 |
Édition | 5eme édition |
Nb. de pages | 123 |
Format | 18 x 26 |
Couverture | Relié |
Poids | 1295g |
Intérieur | Noir et Blanc |
EAN13 | 9780471350989 |
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