Solar Energy Technology

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Energy and Dependence on External Sources and Sun, Physical Descriptions and Reactions – Sun – Earth Geometry – Terminology Extra – Terrestrial Radiation Terrestria Radiation – Measuring Instruments – Estimation of Solar Radiation or Details – Radiation Processing – Long Term – Evaluation of the Apparent Sunrise and Sunset Angles – Estimation of Daily/Monthly Average daily Tilt Factor Under Terrestrial Conditions – Solar Colector Basics – Transmission – Absorptance Product – Daily (Or Monthly Average Daily) Transmittance – Absorptance Product Analytical Evaluation – Theory of Flat Plate Collectors – Liquid Based – Mean temperature and Heat Capacity Effects – Theory of Air Based Solar Flat Plate Collectors – Other Collector Geometries – Concentrating Collectors – Compound Parabolic Collectors – Device and System Performance – Long Term Solar Energy System Performance – Long Term Solar Energy System Performance Simplified Design Methods – Monthly Average Daily Utilizability – The phi(bar) – f chart method Tank Losses and Finite Heat Exchanger – Economic Analysis – Life Cycle Savings : The P1 and P2 Method – Passive Devices – Passive Architecture, Overhangs and Wing Walls

Course Curriculum

Energy and Dependence on External Sources and Sun, Physical Descriptions and Reactions Details 54:40
Sun – Earth Geometry Details 50:16
Terminology Extra – Terrestrial Radiation Terrestria Radiation Details 0:52
Measuring Instruments Details 54:40
Estimation of Solar Radiation or Details Details 53:2
Radiation Processing – Long Term Details 54:48
Evaluation of the Apparent Sunrise and Sunset Angles Details 57:36
Estimation of Daily/Monthly Average daily Tilt Factor Under Terrestrial Conditions Details 44:10
Solar Colector Basics Details 54:53
Transmission – Absorptance Product Details 49:3
Daily (Or Monthly Average Daily) Transmittance Details 49:13
Theory of Flat Plate Collectors – Liquid Based (A) Details 51:49
Theory of Flat Plate Collectors – Liquid Based (B) Details 57:41
Theory of Flat Plate Collectors – Liquid Based (C) Details 55:10
Mean temperature and Heat Capacity Effects Details 56:45
Theory of Air Based Solar Flat Plate Collectors Details 54:35
Theory of Air Based Solar Flat Plate Collectors (Contd.) Details 52:44
Other Collector Geometries Details 54:24
Concentrating Collectors Details 55:13
Concentrating Collectors (Contd.) Details 43:1
Concentrating Collectors (Contd. ) Details 39:46
Compound Parabolic Collectors Details 57:18
Exercise – I Details 55:52
Exercise – I (Contd.) Details 56:35
Device and System Performance Details 54:43
Long Term Solar Energy System Performance Details 52:35
Exercise – I (Contd. ) Details 45:20
Long Term Solar Energy System Performance Simplified Design Methods Details 50:43
Long Term Solar Energy System Performance Simplified Design Methods (Contd.) Details 54:3
Monthly Average Daily Utilizability Details 52:13
The phi(bar) – f chart method (Contd.) Details 52:9
The phi(bar) – f chart method Tank Losses and Finite Heat Exchanger Details 55:36
Exercise – 2 Details 55:8
Exercise – 2 (Contd.) Details 54:22
Exercise – 2 (Contd.) Details 54:59
Economic Analysis Details 54:17
Life Cycle Savings : The P1 and P2 Method Details 55:52
Passive Devices Details 55:5
Passive Architecture, Overhangs and Wing Walls Details 53:38
Passive Architecture, Overhangs and Wing Walls (Contd.) Details 50:33
Summary Details 51:43
Summary (Contd.) Details 1:11
Summary (Contd. ) Details 19:57

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