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Modern HVAC Systems Engineering Handbook: Design, Analyze, and Optimize Heating, Ventilation, and Air Conditioning for High-Performance Buildings - Tapa blanda

KOTTFIELD, ALDREN

 
9798189705472: Modern HVAC Systems Engineering Handbook: Design, Analyze, and Optimize Heating, Ventilation, and Air Conditioning for High-Performance Buildings

Sinopsis

Turn HVAC theory into buildings that actually perform.

Every HVAC design begins with a simple demand and a hard reality: keep indoor air comfortable, healthy, and efficient while the weather outside swings by tens of degrees — and an equation you cannot run on real numbers is one you do not truly own.

Thermodynamics, fluid mechanics, heat transfer, controls, human comfort, and building codes all press on a single design decision at once, usually while a schedule runs. Many references stop at tidy theory or hand over rules of thumb without the reasoning, leaving engineers to bridge the gap between the classroom and a commissioned building alone.

This handbook closes that gap. It develops every method from first principles and carries it through complete, unit-tracked calculations — from the physics of a single air process to a fully commissioned, maintainable system — so you can execute the work, not just recognize it.

Inside, you will:

  • Build integrated fluency that links comfort targets, load calculations, equipment selection, and control logic instead of treating them as separate subjects.

  • Follow fully worked examples that show every step, with end-of-chapter practice problems and boxed answer keys to check your own work.

  • Calculate loads, size and select equipment, and lay out air and water distribution with methods you can apply directly to your projects.

  • Analyze refrigeration cycles, chilled-water plants, and heat-pump systems, and read the performance numbers that separate an efficient design from a wasteful one.

  • Design and sequence controls, then quantify energy use, life-cycle cost, and efficiency savings in defensible terms.

  • Work in both inch-pound and SI units, following current United States practice throughout.

  • Carry a design through ventilation, commissioning, testing and balancing, and troubleshooting — where real buildings succeed or fail.

Key topics: thermal comfort and psychrometrics; envelope heat transfer and heating and cooling load calculations; refrigeration cycles, refrigerants, and the low-GWP refrigerant transition; duct design, fans, and pumps; boilers, hydronics, and radiant heating; chilled-water plants and cooling towers; ventilation, filtration, and indoor air quality; air-handling units and terminal equipment; controls and building automation; energy efficiency and life-cycle cost; heat pumps and emerging low-carbon technologies; and whole-system design integration, commissioning, and maintenance — supported by extensive reference appendices and a complete building design example.

Who it is for: practicing mechanical and building-services engineers, engineers moving into HVAC from adjacent fields, and advanced engineering students who have completed introductory thermodynamics and fluid mechanics. Read in sequence it works as a course; consulted by chapter, it serves as a dependable working reference.

Open the handbook and start building the integrated, calculation-ready understanding that turns HVAC theory into buildings that perform.

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