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Selasa, 30 November 2010

Fundamentals of Fluid Mechanic, 5th


Author(s): Bruce R. Munson, Donald F. Young , Theodore H. Okiishi
Publisher: Wiley
Date : 2006
Pages : 766
Format : pdf + xls
OCR :
Quality : True PDF
Language : English
ISBN-10 : 0470067225
ISBN-13 :


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Sabtu, 06 November 2010

Mechanics of Materials


Author(s): R.C.Hibbeler
Publisher: Prentice Hall
Date : edition 2004
Pages :1558
Format : PDF
OCR :
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Language : English
ISBN-10 : 013191345X
ISBN-13 :


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Jumat, 05 November 2010

Basic And Applied Thermodynamics


Author(s): P.K. Nag
Publisher: Tata McGraw-Hill Publishing Company Ltd.
Date : 2002
Pages : 781
Format : PDF
OCR :
Quality :
Language : English
ISBN-10 : 0070473382
ISBN-13 :

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Rotardynamic Pumps: Centrifugal and Axial


Author(s): K.M. Srinivasan
Publisher: New Age Publications
Date : 2008
Pages : 520
Format : PDF
OCR :
Quality :
Language : English
ISBN-10 : 8122422780
ISBN-13 :


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Theory of Machines: Textbook for Students of B.Sc.Eng. and Diploma Courses


Author(s): R.S. Khurmi , J.K. Gupta
Publisher: S Chand & Co Ltd
Date : 1997
Pages : 1007
Format : PDF
OCR :
Quality :
Language : English
ISBN-10 : 8121901324
ISBN-13 :


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Textbook of Machine Design


Author(s): R.S. Khurmi, J.K. Gupta
Publisher: S Chand & Co Ltd
Date : 2005
Pages : 1230
Format : pdf
OCR : y
Quality : Super (color)
Language : English
ISBN-10 : 8121925371
ISBN-13 :

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Minggu, 13 Juni 2010

Oxford English for Electrical and Mechanical Engineering


Author(s): Eric Glendinning
Publisher: Oxford University Press
Date : 1995-09
Pages : 192
Format : djvu
OCR :
Quality :
Language : english
ISBN-10 : 0194573923
ISBN-13 :

Description:




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Rabu, 09 Juni 2010

Mechanical Engineers' Handbook. Volume 1: Materials and Mechanical Design


Author(s): Myer Kutz (Editor)
Publisher: Wiley; 3 edition
Date : 2005
Pages : 1360
Format : PDF
OCR : Yes
Quality :
Language : English
ISBN-10 : 0471719854
ISBN-13 :


Description:
The updated revision of the bestseller-in a more useful format!
Mechanical Engineers' Handbook has a long tradition as a single resource of valuable information related to specialty areas in the diverse industries and job functions in which mechanical engineers work. This Third Edition, the most aggressive revision to date, goes beyond the straight data, formulas, and calculations provided in other handbooks and focuses on authoritative discussions, real-world examples, and insightful analyses while covering more topics than in previous editions.

Book 1: Materials and Mechanical Design is divided into two parts that go hand-in-hand. The first part covers metals, plastics, composites, ceramics, and smart materials, providing expert advice on common uses of specific materials as well as what criteria qualify them as suitable for particular applications. Coverage in the second part of this book addresses practical techniques to solve real, everyday problems, including:

- Nondestructive testing
- Computer-Aided Design (CAD)
- TRIZ (the Russian acronym for Theory of Inventive Problem Solving)
- The Standard for the Exchange of Product Model Data (STEP)
- Virtual reality

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Mechanical Engineers' Handbook. Volume 2: Instrumentation, Systems, Controls, and MEMS


Author(s): Myer Kutz (Editor)
Publisher: Wiley; 3 edition
Date : 2005
Pages : 928
Format : PDF
OCR : Yes
Quality :
Language : English
ISBN-10 : 0471719862
ISBN-13 :


Description:
The updated Revision of the Bestseller - In a more Useful Format!
Mechanical Engineers' Handbook has a long tradition as a single resource of valuable information related to specialty areas in the diverse industries and job functions in which mechanical engineers work. This Third Edition, the most aggressive revision to date, goes beyond the straight data, formulas, and calculations provided in other handbooks and focuses on authoritative discussions, real-world examples, and insightful analyses while covering more topics that in previous editions.

Book 2: Instrumentation, Systems, Controls, and MEMS is comprised of two major parts, conveniently put together because feedback control systems require measurement transducers. The first part covers instrumentation, including transducer design, strain gages, flow meters, digital integrated circuits, and issues involved in processing transducer signals and acquiring and displaying data.
The second part addresses systems and control, including:

- Control system design, analysis, and performance modification
- Design of servoactuators, controllers, and general-purpose control devices
- "New departures" in mechanical engineering, including neural networks, mechatronics, and MEMS

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Mechanical Engineers' Handbook. Volume 3: Manufacturing and Management


Author(s): Myer Kutz (Editor)
Publisher: Wiley; 3 edition
Date : 2005
Pages : 840
Format : PDF
OCR : Yes
Quality :
Language : English
ISBN-10 : 0471719870
ISBN-13 :


Description:
The updated revision of the bestseller-in a more useful format!
Mechanical Engineers' Handbook has a long tradition as a single resource of valuable information related to specialty areas in the diverse industries and job functions in which mechanical engineers work. This Third Edition, the most aggressive revision to date, goes beyond the straight data, formulas, and calculations provided in other handbooks and focuses on authoritative discussions, real-world examples, and insightful analyses while covering more topics than in previous editions.

Book 3: Manufacturing and Management is comprised of two major parts covering manufacturing and management. The centerpiece of part one, "the handbook within the handbook," covers manufacturing topics related to production, metal working, statistical quality control, and computer-integrated manufacturing. Topics new to the handbook include physical vapor deposition, environmentally conscious manufacturing, and dealing with process technology in the context of design, tooling, manufacturing, and quality engineering. The second part covers a broad array of topics conveniently organized into five areas:

- Project and people management
- Fundamentals of financial management
- Total Quality Management; registrations, certifications, and awards; and safety engineering
- Legal issues, including patents
- Online and print information sources

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Mechanical Engineers' Handbook. Volume 4: Energy and Power


Author(s): Myer Kutz (Editor)
Publisher: Wiley; 3 edition
Date : 2005
Pages : 1104
Format : PDF
OCR : Yes
Quality :
Language : English
ISBN-10 : 0471719889
ISBN-13 :


Description:
The updated revision of the bestseller - in a more useful format!
Mechanical Engineers' Handbook has a long tradition as a single resource of valuable information related to specialty areas in the diverse industries and job functions in which mechanical engineers work. This Third Edition, the most aggressive revision to date, goes beyond the straight data, formulas, and calculations provided in other handbooks and focuses on authoritative discussions, real-world examples, and insightful analyses while covering more topics than in previous editions.

In addition to chapters on thermophysical properties of fluids, fundamentals of fluid mechanics, thermodynamics, heat transfer, combustion, and furnaces, Book 4: Energy and Power features coverage of both conventional (gaseous and liquid fuels, coal, and nuclear) and alternative (solar, geothermal, and fuel cells) energy sources, plus chapters on power machinery, refrigeration and cryogenics, environmental issues, and thermal systems optimization. Much of the material in this book is new or extensively revised, including coverage of such topics as:

- Heat pipes
- Wind turbines
- Fuel cells
- Thermal systems optimization
- Combustion
- Fans, blowers, compressors, and pumps
- Indoor environmental control
- Fluid power

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Fundamentals of Engineering Thermodynamics




Author(s): Michael J. Moran, Howard N. Shapiro
Publisher: John Wiley & Sons
Date : 2006
Pages : 844
Format : PDF
OCR : Y
Quality : excellent
Language : English
ISBN-10 : 0470030372
ISBN-13 :


Description:
This book is a comprehensive, best selling introduction to the basics of engineering thermodynamics. Requiring only college level physics and calculus, this popular book includes numerous illustrations and graphs to help students learn engineering concepts. A tested and proven problem solving methodology encourages readers to think systematically and develop an orderly approach to problem solving. This book provides readers with a state-of-the-art introduction to second law analysis. Design/open ended problems provide readers with brief design experiences that offer them opportunities to apply constraints and consider alternatives.



This book is a comprehensive, best selling introduction to the basics of engineering thermodynamics. Requiring only college level physics and calculus, this popular book includes numerous illustrations and graphs to help students learn engineering concepts. A tested and proven problem solving methodology encourages readers to think systematically and develop an orderly approach to problem solving. This book provides readers with a state-of-the-art introduction to second law analysis. Design/open ended problems provide readers with brief design experiences that offer them opportunities to apply constraints and consider alternatives.

Table Of Contents:

  • Chapter 1. Getting Started: Introductory Concepts and Definitions.
  • 1.1 Using Thermodynamics.
  • 1.2 Defining Systems.
  • 1.3 Describing Systems and Their Behavior.
  • 1.4 Measuring Mass, Length, Time, and Force.
  • 1.5 Two Measurable Properties: Specific Volume and Pressure.
  • 1.6 Measuring Temperature.
  • 1.7 Engineering Design and Analysis.
  • Chapter Summary and Study Guide.

  • Chapter 2. Energy and the First Law of Thermodynamics.
  • 2.1 Reviewing Mechanical Concepts of Energy.
  • 2.2 Broading Our Understanding of Work.
  • 2.3 Broading Our Understanding of Energy.
  • 2.4 Energy Transfer By Heat.
  • 2.5 Energy Accounting: Energy Balance for Closed Systems.
  • 2.6 Energy Analysis of Cycles.
  • Chapter Summary and Study Guide.

  • Chapter 3. Evaluating Properties.
  • 3.1 Fixing the State. EVALUATING PROPERTIES: GENERAL CONSIDERATIONS.
  • 3.2 p–v–T Relation.
  • 3.3 Retrieving Thermodynamic Properties.
  • 3.4 Generalized Compressibility
  • Chart. EVALUATING PROPERTIES USING THE IDEAL GAS MODEL.
  • 3.5 Ideal Gas Model.
  • 3.6 Internal Energy, Enthalpy, and Specific Heats of Ideal Gases.
  • 3.7 Evaluating Du and Dh using Ideal Gas Tables, Software, and Constant Specific Heats.
  • 3.8 Polytropic Process of an Ideal Gas.
  • Chapter Summary and Study Guide.

  • Chapter 4. Control Volume Analysis Using Energy.
  • 4.1 Conservation of Mass for a Control Volume.
  • 4.2 Conservation of Energy for a Control Volume.
  • 4.3 Analyzing Control Volumes at Steady State.
  • 4.4 Transient Analysis. Chapter Summary and Study Guide.

  • Chapter 5. The Second Law of Thermodynamics.
  • 5.1 Introducing the Second Law.
  • 5.2 Identifying Irreversibilities.
  • 5.3 Applying the Second Law to Thermodynamic Cycles.
  • 5.4 Defining the Kelvin Temperature Scale.
  • 5.5 Maximum Performance Measures for Cycles Operating Between Two Reservoirs.
  • 5.6 Carnot Cycle.
  • Chapter Summary and Study Guide.

  • Chapter 6. Using Entropy.
  • 6.1 Introducing Entropy.
  • 6.2 Defining Entropy Change.
  • 6.3 Retrieving Entropy Data.
  • 6.4 Entropy Change in Internally Reversible Processes.
  • 6.5 Entropy Balance for Closed Systems.
  • 6.6 Entropy Rate Balance for Control Volumes.
  • 6.7 Isentropic Processes.
  • 6.8 Isentropic Efficiencies of Turbines, Nozzles, Compressors, and Pumps.
  • 6.9 Heat Transfer and Work in Internally Reversible, Steady–State Flow Processes.
  • Chapter Summary and Study Guide.

  • Chapter 7. Exergy Analysis.
  • 7.1 Introducing Exergy.
  • 7.2 Defining Exergy.
  • 7.3 Closed System Exergy Balance.
  • 7.4 Flow Exergy.
  • 7.5 Exergy Rate Balance for Control Volumes.
  • 7.6 Exergetic (Second Law) Efficiency.
  • 7.7 Thermoeconomics.
  • Chapter Summary and Study Guide.

  • Chapter 8. Vapor Power Systems.
  • 8.1 Modeling Vapor Power Systems.
  • 8.2 Analyzing Vapor Power Systems?Rankline Cycle.
  • 8.3 Improving Performance?Superheat and Reheat.
  • 8.4 Improving Performance?Regenerative Vapor Power Cycle.
  • 8.5 Other Vapor Cycle Aspects.
  • 8.6 Case Study: Exergy Accounting of a Vapor Power Plant.
  • Chapter Summary and Study Guide.

  • Chapter 9. Gas Power Systems. INTERNAL COMBUSTION ENGINES.
  • 9.1 Introducing Engine Terminology.
  • 9.2 Air–Standard Otto Cycle.
  • 9.3 Air–Standard Diesel Cycle.
  • 9.4 Air–Standard Dual Cycle. GAS TURBINE POWER PLANTS.
  • 9.5 Modeling Gas Turbine Power Plants.
  • 9.6 Air–Standard Brayton Cycle.
  • 9.7 Regenerative Gas Turbines.
  • 9.8 Regenerative Gas Turbines with Reheat and Intercooling.
  • 9.9 Gas Turbines for Aircraft Propulsion.
  • 9.10 Combined Gas Turbine?Vapor Power Cycle.
  • 9.11 Ericsson and Stirling Cycles. COMPRESSIBLE FLOW THROUGH NOZZLES AND DIFFUSERS.
  • 9.12 Compressible Flow Preliminaries.
  • 9.13 Analyzing One–Dimensional Steady Flow in Nozzles and Diffusers.
  • 9.14 Flow in Nozzles and Diffusers of Ideal Gases with Constant Specific Heats.
  • Chapter Summary and Study Guide.

  • Chapter 10. Refrigeration and Heat Pump Systems.
  • 10.1 Vapor Refrigeration Systems.
  • 10.2 Analyzing Vapor–Compression Refrigeration Systems.
  • 10.3 Refrigerant Properties.
  • 10.4 Cascade and Multistage Vapor–Compression Systems.
  • 10.5 Absorption Refrigeration.
  • 10.6 Heat Pump Systems.
  • 10.7 Gas Refrigeration Systems.
  • Chapter Summary and Study Guide.

  • Chapter 11. Thermodynamic Relations.
  • 11.1 Using Equations of State.
  • 11.2 Important Mathematical Relations.
  • 11.3 Developing Property Relations.
  • 11.4 Evaluating Changes in Entropy, Internal Energy, and Enthalpy.
  • 11.5 Other Thermodynamic Relations.
  • 11.6 Constructing Tables of Thermodynamic Properties.
  • 11.7 Generalized Charts for Enthalpy and Entropy.
  • 11.8 p?v?T Relations for Gas Mixtures.
  • 11.9 Analyzing Multicomponent Systems.
  • Chapter Summary and Study Guide.

  • Chapter 12. Ideal Gas Mixtures and Psychrometrics Applications. IDEAL GAS MIXTURES: GENERAL CONSIDERATIONS.
  • 12.1 Describing Mixture Composition.
  • 12.2 Relating p, V, and T for Ideal Gas Mixtures.
  • 12.3 Evaluating U, H, S and Specific Heats.
  • 12.4 Analyzing Systems Involving Mixtures. PSYCHROMETRIC APPLICATIONS.
  • 12.5 Introducing Psychrometric Principles.
  • 12.6 Psychrometers: Measuring the Wet–Bulb and Dry–Bulb Temperatures.
  • 12.7 Psychrometric Charts.
  • 12.8 Analyzing Air–Conditioning Processes.
  • 12.9 Cooling Towers.
  • Chapter Summary and Study Guide.

  • CHAPTER 13. Reacting Mixtures and Combustion. COMBUSTION FUNDAMENTALS.
  • 13.1 Introducing Combustion.
  • 13.2 Conservation of Energy––Reacting Systems.
  • 13.3 Determining the Adiabatic Flame Temperature.
  • 13.4 Fuel Cells.
  • 13.5 Absolute Entropy and the Third Law of Thermodynamics. CHEMICAL EXERGY.
  • 13.6 Introducing Chemical Exergy.
  • 13.7 Standard Chemical Exergy.
  • 13.8 Exergy Summary.
  • 13.9 Exergetic (Second Law) Efficiencies of Reacting Systems.
  • Chapter Summary and Study Guide.

  • Chapter 14. Chemical and Phase Equilibrium. EQUILIBRIUM FUNDAMENTALS.
  • 14.1 Introducing Equilibrium Criteria. CHEMICAL EQUILIBRIUM.
  • 14.2 Equation of Reaction Equilibrium.
  • 14.3 Calculating Equilibrium Compositions.
  • 14.4 Further Examples of the Use of the Equilibrium Constant. PHASE EQUILIBRIUM.
  • 14.5 Equilibrium Between Two Phases of a Pure Substance.
  • 14.6 Equilibrium of Multicomponent, Multiphase Systems.
  • Chapter Summary and Study Guide. Index

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Mechanics of Fluids


Author(s): John Ward-Smith
Publisher: Routledge; 8 edition
Date : 2005
Pages : 696
Format : PDF
OCR : Y
Quality :
Language : English
ISBN-10 : 0415362067
ISBN-13 :


Description:

Review
Suitable for both advanced and undergraduate students of engineering, this classic textbook explains the basic principles of the mechanics of fluids. The emphasis is on a sound physical understanding of fluid flow and its engineering applications, rather than on mathematical techniques. SI units are used throughout, and there are many worked examples. New topics for the eighth edition include the physics of tsunamis; procedures for the selection of pumps and fans; and flow losses through nozzles, orifice meters, screens, and gauzes.

Book News


Product Description
The eighth edition of this best-selling textbook, like its predecessors, presents the basic principles of the mechanics of fluids in a thorough and clear manner. The book contains material on this subject appropriate to an honors degree course in mechanical engineering.

Particular emphasis is given to providing a sound physical understanding of fluid flow and its engineering applications. Relevant mathematical techniques are also covered. Students are introduced systematically to the subject, the text moving from the simple to the complex, from the familiar to the unfamiliar. SI units are used throughout and there are many worked examples. The breadth of coverage of this edition is similar to that of the previous edition, but the content has been fully revised and updated, and several new topics are introduced for the first time. For professors, a solutions manual is available to accompany this text.


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Fundamentals of Thermal-Fluid Sciences


Author(s): Yunus A. Cengel
Publisher: McGraw-Hill Higher Education; 3rd edition
Date : (April 2008)
Pages : 1089
Format : pdf
OCR : Y
Quality : good
Language : English
ISBN-10 : 0071266313
ISBN-13 : 9780071266314


Description:

In Chapter 1, the sections on Closed and Open Systems and Properties
of a System are moved to Chapter 2, and the Conservation of Mass Principle
is moved to Chapter 4. A new section Accuracy, Precision, and
Significant Digits is added.
• In Chapter 2, a new section Energy and Environment is added in addition
to the two sections moved from Chapter 1.
• In Chapter 3, the section Vapor Pressure and Phase Equilibrium is
deleted since it is now covered in Chapter 9, and a new section Compressibility
Factor is added to complement the discussions of ideal gas.
• In Chapter 4, a new section Conservation of Mass Principle (moved
from Chapter 1) is added.
• In Chapter 6, the section Household Refrigerators is deleted.
• In Chapter 7, a new section Entropy Balance is added.
• In Chapter 10 (old Chapter 9), a new section Vapor Pressure and Cavitation
is added, and the section Viscosity is greatly revised.
• In Chapter 11 (old Chapter 10), a new section Fluids in Rigid-Body Motion
is added, and the section Buoyancy and Stability is greatly revised.
• In Chapter 13 (old Chapter 11), four new sections Basic Conservation
Relations, Choosing a Control Volume, Forces Acting on a Control Volume,
and The Angular Momentum Equation are added. All other sections
are greatly revised.
• In Chapter 14 (old Chapter 12), a new section The Entrance Region is
added, the section Laminar Flow in Pipes is greatly revised.
• In Chapter 15 (old Chapter 13), the first three sections are greatly revised.
• In Chapter 17 (old Chapter 15), the section Thermal Insulation is
deleted and a new section Heat Transfer in Common Configurations is
added.
• In Chapter 19 (old Chapter 17), the covered topics remain the same, but
the material in all sections is greatly revised.
In Chapter 20 (old Chapter 18), two new sections Equation of Motion
and the Grashof Number and Natural Convection from Finned Surfaces
and PCBs are added. The remaining part of the chapter is completely
rewritten, and the Nusselt number relations for rectangular enclosures
are updated.
• In Chapters 21 and 22 (old Chapter 19), a new section Radiation Intensity
is added, and the section Radiation Properties is rewritten. The basic
concepts associated with thermal radiation are covered in Chapter 21
Fundamentals of Thermal Radiation, while radiation exchange between
surfaces is discussed in Chapter 22 Radiation Heat Transfer.
• In the appendixes, the values of the physical constants are updated; new
tables for the properties of saturated ammonia and propane are added;
and the tables on the properties of air, gases, and liquids (including liquid
metals) are replaced by those obtained using EES. Therefore, property
values in tables for air, other ideal gases, ammonia, propane, and
liquids are identical to those obtained from EES.
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Engineering Fundamentals of the Internal Combustion Engine


Author(s): Willard W. Pulkrabek
Publisher: Prentice Hall
Date : 1997
Pages : 426
Format : pdf
OCR :
Quality :
Language : English
ISBN-10 : 0135708540
ISBN-13 : 9780135708545


Description:

Product Description
This applied thermoscience book covers the basic principles and applications of various types of internal combustion engines. Explores the fundamentals of most types of internal combustion engines with a major emphasis on reciprocating engines. Covers both spark ignition and compression ignition engines as well as those operating on four-stroke cycles and on two-stroke cycles ranging in size from small model airplane engines to the larger stationary engines. Examines recent advancements, such as, Miller cycle analysis, lean burn engines, 2-stroke cycle automobile engines, variable valve timing, and thermal storage.

From the Publisher
This applied thermoscience text covers the basic principles and applications of various types of internal combustion engines.
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Handbook of Air Conditioning and Refrigeration



Author(s): Shan Wang
Publisher: McGraw-Hill Professional; 2 edition (October 17, 2000)
Date : 2000
Pages : 1401
Format : pdf
OCR : Y
Quality : good
Language : English
ISBN-10 : 0070681678
ISBN-13 : 9780070681675

Description:

A handbook providing updated and practical material on air conditioning and refrigeration systems. Also provides answers to design, selection, and operation and maintenance questions, HVAC standards and guidelines, use of computers and controllers in AC and refrigeration systems, and more. DLC: Air conditioning.
* A broad range of disciplines--energy conservation and air quality issues, construction and design, and the manufacture of temperature-sensitive products and materials--is covered in this comprehensive handbook
* Provide essential, up-to-date HVAC data, codes, standards, and guidelines, all conveniently located in one volume
* A definitive reference source on the design, selection and operation of A/C and refrigeration systems


* A broad range of disciplines--energy conservation and air quality issues, construction and design, and the manufacture of temperature-sensitive products and materials--is covered in this comprehensive handbook
* Provide essential, up-to-date HVAC data, codes, standards, and guidelines, all conveniently located in one volume
* A definitive reference source on the design, selection and operation of A/C and refrigeration systems


From the Back Cover
A handbook that provides practical and updated material on air conditioning and refrigeration systems, produced by an author with over 50 years experience as a practicing engineer under his belt.

Whether you're an HVAC or mechanical engineer, technician, or student, providing an effective controlled environment through air conditioning and refrigeration technology is now within reach. This guide provides you with all the answers on AC and refrigeration systems--from designing and selection to operation and maintenance. This book provides:

*Design information

*HVAC data, standards, and guidelines

*A system-wide approach

*Use of computers and controllers in AC and refrigeration systems

*Chapters ranging from management and control systems to system selection, commissioning, and maintenance.

So don't waste valuable time searching through numerous resources. Here you get it all -- the latest in technological advances in air conditioning and refrigeration--in one unique volume.

Psychometrics
Indoor Design Conditions
Energy Management Control Systems (EMCS)
Basics
Load Calculations
Air Conditioning
Cycles
Air Flow
Air System Components
Fans, Filters, Coils, and Humidifier
Air System Equipment
Air-Handling Unit Packaged Units
Air Duct Design
Space Air Diffusion
Sound Control
Basics Operating Modes Outdoor Ventilation
Air and Smoke Control
Air Volume (VAV) Systems
Water and Heating Systems
Refrigerant Cycles
Refrigeration System Components
Reciprocating, Scroll, Rotary, and Screw Refrigeration Systems
Heat Pump Systems
Cogeneration
Centrifugal Refrigeration Systems
Air Conditioning Systems
Energy Use
Index
Cost Estimation
Classification
Characteristics
System Selection
Commissioning Maintenance


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Pump Handbook


Author(s): Igor Karassik, Joseph Messina, Paul Cooper, and Charles Heald
Publisher: McGraw-Hill Professional
Date : 2007
Pages : 1632
Format : PDF
OCR : Y
Quality :
Language : English
ISBN-10 : 0071460446
ISBN-13 :


Description:
Your Best-Bet Guide to Essential Machinery
Whenever and wherever fluids must be moved, a pump -- next to the electric motor, the second most common machine used today -- must be there. And if you work with pumps, the Pump Handbook, the field's hands-down reference leader, must be there, too.
Newly revised, and bringing together the resources of international experts, this job-critical guide is the one and only guide to the design, application, specification, purchase, operation, and maintenance of pumps of all kinds. Covering everything from advanced seals to basic design paradigms, the Pump Handbook takes you through all the latest developments in pump technologies. This important update, the first in 14 years, offers practical guidance to help you:
*Design leading-edge pumps of all types for any uses.
*Select and purchase the right pump for your application.
*Specify materials, drivers, valves, piping, intakes, and other components--using both SI and Customary Units.
*Choose and apply controls and valves
*Install and operate any type of pump.
*Test, maintain, and troubleshoot pumping equipment and peripherals.
*Find details on centrifugal, jet, positive displacement, and other pumps.
*Keep state-of-the-art reference data and resources always at hand.

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