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Lesson 1 · Lesson 2 · Lesson 3 · Lesson 4 · Lesson 5 · Lesson 6 · Lesson 7 · Lesson 8 · Lesson 9 · Lesson 10 · Lesson 11 · Lesson 12 · Lesson 13 · Lesson 14 · Lesson 15 · Lesson 16 · Lesson 17 · Lesson 18 · Lesson 19 · Lesson 20 · Lesson 21 · Lesson 22 · Lesson 23 · Lesson 24 · Lesson 25 · Lesson 26 · Lesson 27.
Development Of Refrigerants And Compressors, PDF, 0.315 kb. Applications Of Refrigeration & Air Conditioning, Applications Of Refrigeration & Air Conditioning, PDF, 0.298 kb. Review of fundamental principles ? Thermodynamics : Part I, Review of fundamental principles ? Thermodynamics : Part I, PDF, 0.209 kb.
Important requirements of an air conditioning duct (Section 38.1). 2. General rules for duct design (Section 38.2). 3. Classification of duct systems (Section 38.3). 4. Commonly used duct design methods (Section 38.4). 5. Principle of velocity method (Section 38.4.1). 6. Principle of equal friction method (Section 38.4.2). 7.
Working principle, advantages, disadvantages and applications of all air systems, namely: a) Single duct, constant volume, single zone systems (Section 36.4.1) b) Single duct, constant volume, multiple zone systems (Section 36.4.2) c) Single duct, variable air volume (VAV) systems (Section 36.4.3) d) Dual duct, constant
In air conditioning systems that use air as the fluid in the thermal distribution system, it is essential to design the Air Handling Unit (AHU) properly. The primary function of an AHU is to transmit processed air from the air conditioning plant to the conditioned space and distribute it properly within the conditioned space. A typical.
Purpose of psychrometric calculations (Section 30.1). 2. Analysis of a simple, summer air conditioning system with 100% re-circulated air. (Section 30.2.1). 3. Analysis of a summer air conditioning system with outdoor air for ventilation and with zero by-pass factor (Section 30.2.2). 4. Analysis of a simple, summer air
Introduction to load calculations (Section 35.1). 2. Differences between conventional cooling and heating load calculation methodologies (Section 35.2). 3. Methods of estimating cooling and heating loads on buildings such as rules-of- thumb, semi-empirical methods etc. (Section 35.3). 4. Cooling load calculations using
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USA, 2007. 2. ASHRAE Handbook – HVAC Systems and. Equiplents, American Society of Heating,. Refrigerating and Air-Conditioning Engineers. Inc., Atlanta, USA, 2008. 3. Haines, W.R. and Wilson, C.L., HVAC. Systems Design Handbook, McGraw Hill, 2nd. Ed., New Delhi, 1994. 4. Legg, R.C., Air Conditioning Systems -.
Discuss the general aspects of heat transfer through buildings (Section 34.1). 2. Discuss one-dimensional, steady state heat transfer through homogeneous, non- homogeneous walls, through air spaces and through composite walls of the buildings. (Section 34.2). 3. Discuss unsteady heat transfer through opaque walls
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