[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"doc-detail-129030-en":3,"doc-seo-129030-105":30,"detail-sidebar-cat-0-en-105":92},{"code":4,"msg":5,"data":6},0,"success",{"doc_id":7,"user_id":8,"nickname":9,"user_avatar":10,"doc_module":4,"category_id":11,"category_name":12,"doc_title":13,"doc_description":14,"doc_content":15,"file_id":16,"file_url":17,"file_type":18,"file_size":19,"view_count":11,"is_deleted":4,"is_public":20,"is_downloadable":20,"audit_status":20,"page_count":21,"language":22,"language_code":23,"site_id":24,"html_lang":23,"table_of_contents":25,"faqs":26,"seo_title":27,"seo_description":14,"update_tm":28,"read_time":29},129030,5909887254083,"Miles","https://ap-avatar.wpscdn.com/davatar_276721f389ce27ea32af1340a28f341c",6,"Technology","Heating, Ventilating, Air Conditioning - Faye C. McQuiston","Comprehensive HVAC engineering text covering the fundamentals and design workflow for heating, ventilation, and air conditioning systems. The material progresses from historical context and unit concepts to detailed treatment of complete system selection, component distribution, and all-air/all-water and heat pump architectures. It develops moist-air properties and conditioning processes, then addresses comfort and indoor air quality, heat transmission, heating loads, solar radiation, cooling load calculations, energy simulation, piping and pumps, airflow diffusion, fans, and advanced heat and mass transfer equipment including refrigeration and extended-surface exchangers.","Table of Contents  \nCover  \nTable of Contents  \nTitle Page  \nCopyright Page  \nAbout the Companion Website  \nChapter 1: Introduction  \n1.1 HISTORICAL NOTES  \n1.2 COMMON HVAC UNITS AND DIMENSIONS  \n1.3 FUNDAMENTAL PHYSICAL CONCEPTS  \n1.4 ADDITIONAL COMMENTS  \nREFERENCES  \nPROBLEMS  \nChapter 2: Air‐Conditioning Systems  \n2.1 THE COMPLETE SYSTEM  \n2.2 SYSTEM SELECTION AND ARRANGEMENT  \n2.3 HVAC COMPONENTS AND DISTRIBUTION SYSTEMS  \n2.4 TYPES OF ALL‐AIR SYSTEMS  \n2.5 AIR‐AND‐WATER SYSTEMS  \n2.6 ALL‐WATER SYSTEMS  \n2.7 DECENTRALIZED COOLING AND HEATING  \n2.8 HEAT PUMP SYSTEMS  \n2.9 HEAT RECOVERY SYSTEMS  \n2.10 THERMAL ENERGY STORAGE  \nREFERENCES  \nPROBLEMS  \nChapter 3: Moist Air Properties and Conditioning Processes  \n3.1 MOIST AIR AND THE STANDARD ATMOSPHERE  \n3.2 FUNDAMENTAL PARAMETERS  \n3.3 ADIABATIC SATURATION  \n3.4 WET BULB TEMPERATURE AND THE PSYCHROMETRIC CHART  \n3.5 CLASSIC MOIST AIR PROCESSES  \n3.6 SPACE AIR CONDITIONING—DESIGN CONDITIONS  \n3.7 SPACE AIR CONDITIONING—OFF‐DESIGN CONDITIONS  \nREFERENCES  \nPROBLEMS  \nChapter 4: Comfort and Health—Indoor Environmental Quality  \n4.1 COMFORT—PHYSIOLOGICAL CONSIDERATIONS  \n4.2 ENVIRONMENTAL COMFORT INDICES  \n4.3 COMFORT CONDITIONS  \n4.4 The Basic Concerns of IAQ  \n4.5 COMMON CONTAMINANTS  \n4.6 METHODS TO CONTROL HUMIDITY  \n4.7 METHODS TO CONTROL CONTAMINANTS REFERENCES  \nPROBLEMS  \nChapter 5: Heat Transmission in Building Structures  \n5.1 BASIC HEAT‐TRANSFER MODES  \n5.2 TABULATED OVERALL HEAT‐TRANSFER COEFFICIENTS  \n5.3 MOISTURE TRANSMISSION  \nREFERENCES  \nPROBLEMS  \nChapter 6: Space Heating Load  \n6.1 OUTDOOR DESIGN CONDITIONS  \n6.2 INDOOR DESIGN CONDITIONS  \n6.3 TRANSMISSION HEAT LOSSES  \n6.4 INFILTRATION  \n6.5 HEAT LOSSES FROM AIR DUCTS  \n6.6 AUXILIARY HEAT SOURCES  \n6.7 INTERMITTENTLY HEATED STRUCTURES  \n6.8 SUPPLY AIR FOR SPACE HEATING  \n6.9 SOURCE MEDIA FOR SPACE HEATING  \n6.10 COMPUTER CALCULATION OF HEATING LOADS REFERENCES  \nPROBLEMS  \nChapter 7: Solar Radiation  \n7.1 THERMAL RADIATION  \n7.2 THE EARTH'S MOTION ABOUT THE SUN  \n7.3 TIME  \n7.4 SOLAR ANGLES  \n7.5 SOLAR IRRADIATION  \n7.6 HEAT GAIN THROUGH FENESTRATIONS  \n7.7 ENERGY CALCULATIONS  \nREFERENCES  \nPROBLEMS  \nChapter 8: The Cooling Load  \n8.1 HEAT GAIN, COOLING LOAD, AND HEAT EXTRACTION RATE  \n8.2 APPLICATION OF COOLING LOAD CALCULATION PROCEDURES  \n8.3 DESIGN CONDITIONS  \n8.4 INTERNAL HEAT GAINS  \n8.5 OVERVIEW OF THE HEAT BALANCE METHOD  \n8.6 TRANSIENT CONDUCTION HEAT TRANSFER  \n8.7 OUTSIDE SURFACE HEAT BALANCE—OPAQUE SURFACES  \n8.8 FENESTRATION—TRANSMITTED SOLAR RADIATION  \n8.9 INTERIOR SURFACE HEAT BALANCE—OPAQUE SURFACES  \n8.10 SURFACE HEAT BALANCE—TRANSPARENT SURFACES  \n8.11 ZONE AIR HEAT BALANCE  \n8.12 IMPLEMENTATION OF THE HEAT BALANCE METHOD  \n8.13 RADIANT TIME SERIES METHOD  \n8.14 IMPLEMENTATION OF THE RADIANT TIME SERIES METHOD  \n8.15 SUPPLY AIR QUANTITIES  \nREFERENCES  \nPROBLEMS  \nChapter 9: Energy Calculations and Building Simulation  \n9.1 DEGREE‐DAY PROCEDURE  \n9.2 BIN METHOD  \n9.3 COMPREHENSIVE SIMULATION METHODS  \n9.4 ENERGY CALCULATION TOOLS  \n9.5 OTHER ASPECTS OF BUILDING SIMULATION REFERENCES  \nPROBLEMS  \nChapter 10: Flow, Pumps, and Piping Design  \n10.1 FLUID FLOW BASICS  \n10.2 CENTRIFUGAL PUMPS  \n10.3 COMBINED SYSTEM AND PUMP CHARACTERISTICS  \n10.4 PIPING SYSTEM FUNDAMENTALS  \n10.5 SYSTEM DESIGN  \n10.6 STEAM HEATING SYSTEMS  \nREFERENCES  \nPROBLEMS  \nChapter 11: Space Air Diffusion  \n11.1 BEHAVIOR OF JETS  \n11.2 AIR‐DISTRIBUTION SYSTEM DESIGN REFERENCES  \nPROBLEMS  \nChapter 12: Fans and Building Air Distribution  \n12.1 FANS  \n12.2 FAN RELATIONS  \n12.3 FAN PERFORMANCE AND SELECTION  \n12.4 FAN INSTALLATION  \n12.5 FIELD PERFORMANCE TESTING  \n12.6 FANS AND VARIABLE‐AIR‐VOLUME SYSTEMS  \n12.7 AIR FLOW IN DUCTS  \n12.8 AIR FLOW IN FITTINGS  \n12.9 ACCESSORIES  \n12.10 DUCT DESIGN—GENERAL  \n12.11 DUCT DESIGN—SIZING REFERENCES  \nPROBLEMS  \nChapter 13: Direct Contact Heat and Mass Transfer  \n13.1 COMBINED HEAT AND MASS TRANSFER  \n13.2 SPRAY CHAMBERS  \n13.3 COOLING TOWERS  \nREFERENCES  \nPROBLEMS  \nChapter 14: E","cbCaioplu9lNRINj","https://ap.wps.com/l/cbCaioplu9lNRINj","pdf",51978519,1,1038,"English","en",105,"# Chapter 1: Introduction\n## 1.1 Historical Notes\n## 1.2 Common HVAC Units and Dimensions\n## 1.3 Fundamental Physical Concepts\n## 1.4 Additional Comments\n# Chapter 2: Air-Conditioning Systems\n## 2.1 The Complete System\n## 2.2 System Selection and Arrangement\n## 2.3 HVAC Components and Distribution Systems\n## 2.4 Types of All-Air Systems\n## 2.5 Air-and-Water Systems\n## 2.6 All-Water Systems\n## 2.7 Decentralized Cooling and Heating\n## 2.8 Heat Pump Systems\n## 2.9 Heat Recovery Systems\n## 2.10 Thermal Energy Storage\n# Chapter 3: Moist Air Properties and Conditioning Processes\n## 3.1 Moist Air and the Standard Atmosphere\n## 3.2 Fundamental Parameters\n## 3.3 Adiabatic Saturation\n## 3.4 Wet Bulb Temperature and the Psychrometric Chart\n## 3.5 Classic Moist Air Processes\n## 3.6 Space Air Conditioning—Design Conditions\n## 3.7 Space Air Conditioning—Off-Design Conditions\n# Chapter 4: Comfort and Health—Indoor Environmental Quality\n## 4.1 Comfort—Physiological Considerations\n## 4.2 Environmental Comfort Indices\n## 4.3 Comfort Conditions\n## 4.4 The Basic Concerns of IAQ\n## 4.5 Common Contaminants\n## 4.6 Methods to Control Humidity\n## 4.7 Methods to Control Contaminants\n# Chapter 5: Heat Transmission in Building Structures\n## 5.1 Basic Heat-Transfer Modes\n## 5.2 Tabulated Overall Heat-Transfer Coefficients\n## 5.3 Moisture Transmission\n# Chapter 6: Space Heating Load\n## 6.1 Outdoor Design Conditions\n## 6.2 Indoor Design Conditions\n## 6.3 Transmission Heat Losses\n## 6.4 Infiltration\n## 6.5 Heat Losses from Air Ducts\n## 6.6 Auxiliary Heat Sources\n## 6.7 Intermittently Heated Structures\n## 6.8 Supply Air for Space Heating\n## 6.9 Source Media for Space Heating\n## 6.10 Computer Calculation of Heating Loads\n# Chapter 7: Solar Radiation\n## 7.1 Thermal Radiation\n## 7.2 The Earth's Motion About the Sun\n## 7.3 Time\n## 7.4 Solar Angles\n## 7.5 Solar Irradiation\n## 7.6 Heat Gain through Fenestrations\n## 7.7 Energy Calculations\n# Chapter 8: The Cooling Load\n## 8.1 Heat Gain, Cooling Load, and Heat Extraction Rate\n## 8.2 Application of Cooling Load Calculation Procedures\n## 8.3 Design Conditions\n## 8.4 Internal Heat Gains\n## 8.5 Overview of the Heat Balance Method\n## 8.6 Transient Conduction Heat Transfer\n## 8.7 Outside Surface Heat Balance—Opaque Surfaces\n## 8.8 Fenestration—Transmitted Solar Radiation\n## 8.9 Interior Surface Heat Balance—Opaque Surfaces\n## 8.10 Surface Heat Balance—Transparent Surfaces\n## 8.11 Zone Air Heat Balance\n## 8.12 Implementation of the Heat Balance Method\n## 8.13 Radiant Time Series Method\n## 8.14 Implementation of the Radiant Time Series Method\n## 8.15 Supply Air Quantities\n# Chapter 9: Energy Calculations and Building Simulation\n## 9.1 Degree-Day Procedure\n## 9.2 Bin Method\n## 9.3 Comprehensive Simulation Methods\n## 9.4 Energy Calculation Tools\n## 9.5 Other Aspects of Building Simulation\n# Chapter 10: Flow, Pumps, and Piping Design\n## 10.1 Fluid Flow Basics\n## 10.2 Centrifugal Pumps\n## 10.3 Combined System and Pump Characteristics\n## 10.4 Piping System Fundamentals\n## 10.5 System Design\n## 10.6 Steam Heating Systems\n# Chapter 11: Space Air Diffusion\n## 11.1 Behavior of Jets\n## 11.2 Air-Distribution System Design\n# Chapter 12: Fans and Building Air Distribution\n## 12.1 Fans\n## 12.2 Fan Relations\n## 12.3 Fan Performance and Selection\n## 12.4 Fan Installation\n## 12.5 Field Performance Testing\n## 12.6 Fans and Variable-Air-Volume Systems\n## 12.7 Air Flow in Ducts\n## 12.8 Air Flow in Fittings\n## 12.9 Accessories\n## 12.10 Duct Design—General\n## 12.11 Duct Design—Sizing References\n# Chapter 13: Direct Contact Heat and Mass Transfer\n## 13.1 Combined Heat and Mass Transfer\n## 13.2 Spray Chambers\n## 13.3 Cooling Towers\n# Chapter 14: Extended Surface Heat Exchangers\n## 14.1 The Log Mean Temperature Difference (LMTD) Method\n## 14.2 The Number of Transfer Units (NTU) Method\n## 14.3 Heat Transfer—Single-Component Fluids\n## 14.4 Transport Coefficients Inside Tubes\n## 14.5 Transport Coefficients Outside Tubes and Compact Surfaces\n## 14.6 Design Procedures for Sensible Heat Transfer\n## 14.7 Combined Heat and Mass Transfer References\n# Chapter 15: Refrigeration\n## 15.1 The Performance of Refrigeration Systems\n## 15.2 The Theoretical Single-Stage Compression Cycle\n## 15.3 Refrigerants\n## 15.4 Refrigeration Equipment Components\n## 15.5 The Real Single-Stage Cycle\n## 15.6 Absorption Refrigeration\n## 15.7 The Theoretical Absorption Refrigeration System\n## 15.8 The Aqua–Ammonia Absorption System\n## 15.9 The Lithium Bromide–Water System\n# Appendix\n## Appendix A: Thermophysical Properties\n## Appendix B: Weather Data\n## Appendix C: Pipe and Tube Data\n## Appendix D: Useful Data\n## Appendix E: Charts\n## Index","[{\"question\":\"What topics are covered in the HVAC system overview chapters?\",\"answer\":\"The book covers complete system concepts, how to select and arrange HVAC systems, key components and distribution networks, and major system categories such as all-air, air-and-water, all-water, decentralized cooling/heating, heat pump systems, heat recovery, and thermal energy storage.\"},{\"question\":\"How does the text handle indoor comfort and health?\",\"answer\":\"It explains comfort with physiological considerations and environmental comfort indices, defines comfort conditions, and addresses indoor air quality (IAQ), common contaminants, and methods to control humidity and contaminants.\"},{\"question\":\"How are heating and cooling loads calculated or estimated?\",\"answer\":\"It presents space heating load fundamentals including design conditions, transmission losses, infiltration, duct losses, auxiliary heat sources, and intermittently heated structures, then develops cooling load methods using heat balance, heat gain components, surface and zone balances, and related radiant or transient approaches.\"}]","Heating, Ventilating, Air Conditioning - Faye C. 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