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|z 2016934577
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|a 9781259589799 (e-ISBN)
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|a 125958979X (e-ISBN)
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|a 9781259589782 (print-ISBN)
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|a 1259589781 (print-ISBN)
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|a (OCoLC)960035833
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|a IN-ChSCO
|b eng
|e rda
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|a eng
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|a 621/.042
|2 23
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|a Jayamaha, Lal,
|e author.
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|a Energy-Efficient Industrial Systems: Evaluation and Implementation /
|c Lal Jayamaha.
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|a First edition.
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264 |
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1 |
|a New York, N.Y. :
|b McGraw-Hill Education,
|c [2016]
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264 |
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|c ?2016
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300 |
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|a 1 online resource (288 pages) :
|b illustrations.
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|a text
|2 rdacontent
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|a computer
|2 rdamedia
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|a online resource
|2 rdacarrier
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|a McGraw-Hill's AccessEngineering
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|a Includes bibliographical references and index.
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|a A. Dedication -- B. About the Author -- C. Preface -- D. Abbreviations and Acronyms -- 1. Energy Management -- Introduction -- Main Drivers for Energy Management -- Typical Energy Management Program -- Energy Policy -- Energy Management Team -- Energy Manager -- Energy Usage and Baseline Data -- Energy Accounting Centers and EnPIs -- Targets and Action Plans -- Energy Audits -- Training -- Awareness -- Documentation -- Internal Audit -- Management Review -- 2. Motors and Drives -- Introduction to Motors -- Speed of Motors -- Slip in Motors -- Motor Efficiency -- Losses in Motors -- High-Efficiency Motors -- Impact of Motor Loading on Efficiency -- Estimating Motor Loading -- Economics of Energy-Efficient Motors -- Input Power Supply to Motors -- Maintenance of Motors -- Motor Drives -- Variable-Frequency Drives -- 3. Pumping Systems -- Types of Pumps -- System and Pump Curves -- Pump Power -- Affinity Laws -- Pressure Losses in Pipes and Fittings -- Parallel and Series Pumping -- Pump Sizing -- Constant-Flow versus Variable-Flow Systems -- Effect of Pump Speed and Size on Efficiency -- Avoiding Use of Bypass Systems -- Use of Small Pumps to Augment Larger Pumps -- Designing to Minimize Pressure Losses -- Pump Efficiency -- Overall Efficiency -- 4. Fan Systems -- Types of Fans -- Fan and System Characteristics -- Fan Selection -- Theoretical Fan Power Consumption -- Affinity Laws -- System Losses -- Fan Discharge and Inlet System Effects -- Filter Losses -- Coil Losses -- Fan Efficiency -- Right Sizing of Fans -- Modulating Airflow Rate -- 5. Boilers and Steam Systems -- Introduction -- Fundamentals of Steam -- Boilers -- Boiler Efficiency -- Energy-Saving Measures for Boiler Systems -- 6. Process Cooling Systems -- Introduction -- Once-Through Systems -- Cooling Tower Systems -- Low-Temperature Cooling Systems -- Refrigeration Systems -- 7. Compressed Air Systems -- Introduction -- Typical System Components -- Free Air Delivery -- Standard Conditions -- Utilization Factor -- Types of Compressors -- Basic Theory of Compression -- Specific Power -- Efficiency -- Multistage and Intercooling -- Heat Recovery -- Dryers -- Receiver Tanks -- System Pressure and Losses -- Compressed Air Leaks -- Using Blowers for Tank Agitation -- Intake Temperature -- Controls -- 8. Heat Recovery Systems -- Introduction -- Modes of Heat Transfer -- Heat Exchangers -- Performance of Heat Exchangers -- Shell and Tube Heat Exchangers -- Plate-Type Heat Exchangers -- Rotary Heat Exchangers -- Fouling in Heat Exchangers -- Overall Heat Transfer Coefficient Values -- 9. Combined Heat and Power Systems -- Introduction -- Internal Combustion Engine -- Gas Turbine -- Steam Turbine -- Combined Cycle -- Need for CHP Systems -- Types of Cogeneration Systems -- Applications and Considerations -- Tri-Generation Systems -- 10. Financial Analysis -- Introduction -- Simple Payback Period -- Return on Investment -- Cash Flow Analysis -- Time Value of Money -- Net Present Value -- Discounting Rate -- Discounted Payback Period -- Internal Rate of Return -- Sensitivity Analysis -- Life Cycle Cost -- A. Bibliography.
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|a Annotation Proven Solutions for Maximizing Energy Efficiency in Today's Industrial Systems. This practical guide features ten self-contained chapters that thoroughly analyze each component in large-scale industrial facilities and lay out best practices for reducing energy consumption and optimizing performance. Designed to help minimize costs and comply with environmental regulations, Energy-Efficient Industrial Systems: Evaluation and Implementation clearly explains the elements of successful energy management programs and offers ready-to-implement strategies and techniques. Real-world case studies throughout illustrate successful projects that have achieved significant energy conservation results. Energy-Efficient Industrial Systems: Evaluation and Implementation covers: - Energy Management- Motors and Drives- Pumping Systems- Fan Systems- Boilers and Steam Systems- Process Cooling Systems- Compressed Air Systems- Heat Recovery Systems- Combined Heat and Power- Financial Analysis.
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530 |
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|a Also available in print edition.
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533 |
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|a Electronic reproduction.
|b New York, N.Y. :
|c McGraw Hill,
|d 2016.
|n Mode of access: World Wide Web.
|n System requirements: Web browser.
|n Access may be restricted to users at subscribing institutions.
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538 |
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|a Mode of access: Internet via World Wide Web.
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546 |
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|a In English.
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588 |
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|a Description based on e-Publication PDF.
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650 |
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|a Factories
|x Energy consumption.
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650 |
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|a Industries
|x Energy conservation.
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650 |
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|a Industries
|x Energy conservation
|v Case studies.
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655 |
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0 |
|a Electronic books.
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776 |
0 |
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|i Print version:
|t Energy-Efficient Industrial Systems: Evaluation and Implementation.
|b First edition.
|d New York, N.Y. : McGraw-Hill Education, 2016
|w (OCoLC)927378381
|
830 |
|
0 |
|a McGraw-Hill's AccessEngineering.
|
856 |
4 |
0 |
|u https://accessengineeringlibrary.uam.elogim.com/content/book/9781259589782
|z Texto completo
|