Modern Refrigeration and Air Conditioning Handbook : The Complete Guide to Vapor-Compression Systems, Psychrometrics, and Refrigerant Management for HV
Overview
Two technicians put gauges on the same misbehaving system and reach opposite conclusions. The difference is almost never the tools.
Refrigeration and air conditioning is usually taught in halves. One half is field procedure handed down without the physics that explains it, so a technician learns to look for ten degrees of subcooling without ever learning what subcooling reveals. The other half is thermodynamic theory taught away from the equipment, so a graduate can derive a cycle efficiency but has never watched a compressor short-cycle. Each half works until a system does something the procedure does not cover. Then one person is guessing and the other is sizing on paper, and the move toward lower-global-warming-potential working fluids is widening that gap rather than closing it.
This handbook keeps theory and practice in the same hand. It builds the thermodynamics and heat transfer from first principles, then follows the working fluid through every component a technician actually touches, so the number on the gauge and the reason behind it arrive together. Inch-pound units lead, because that is how equipment is rated and field instruments are read, with metric equivalents alongside.
Inside, you will be able to:- Plot a real cycle from field measurements and calculate refrigerating effect, work of compression, heat of rejection, capacity, and coefficient of performance
- Separate the effects of superheat, subcooling, pressure drop, isentropic efficiency, and clearance volume, and quantify what each one costs
- Work moist-air problems on the chart and carry them through to cooling and heating load calculations for real buildings
- Analyze every component in the order the fluid meets it, and size ducts and lines to real friction, velocity, and oil-return limits
- Test, evacuate, charge by superheat or subcooling, balance airflow, and commission a system with documentation that stands up later
- Diagnose systematically using superheat and subcooling as primitives, checking compression ratio, non-condensables, approach, and split rather than working from a symptom list
Key topics: the two laws and the overall heat-transfer coefficient; fluid classification, safety groups, environmental metrics, glide, and the current regulatory transition; ideal and actual cycles; psychrometrics; load calculation; compressors and capacity control; heat rejection and cooling towers; expansion valves, fixed restrictors, and defrost; duct design, fan laws, and balancing; line sizing and oil return; absorption and thermoelectric cooling; heat pumps, balance point, and seasonal performance; controls, motors, and variable-speed drives; installation and commissioning; troubleshooting and maintenance. Every chapter carries learning objectives, fully worked examples, practice problems, and an answer key, and six appendices, a glossary, a symbol list, and an index keep it useful as a bench reference.
Written for apprentices and working service technicians who want the reasoning under the procedure, and students, instructors, and practicing engineers who want design methods traced to their physical basis. Comfortable algebra and a first exposure to physics are enough to begin. Because codes and regulations change, safety-critical values should be confirmed against the governing edition, and this book supports rather than replaces licensed professional judgment.
Open this handbook and start reading the machine instead of guessing at it.
This item is Non-Returnable
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Details
- ISBN-13: 9798189992018
- ISBN-10: 9798189992018
- Publisher: Independently Published
- Publish Date: July 2026
- Dimensions: 11 x 8.5 x 1.19 inches
- Shipping Weight: 2.96 pounds
- Page Count: 588
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