SlideShare a Scribd company logo
1 of 34
Download to read offline
Sustainable Energy Science and Engineering Center
Solar Thermal Conversion
Major Functions:
• Solar Radiation collection and concentration
• Conversion to heat
• Storage of energy
• Generation of electricity
Sustainable Energy Science and Engineering Center
Solar Thermal Conversion
Solar energy is collected as high-temperature heat, generally by
means of mirrors or lenses that track the motion of the sun and
direct a concentrated solar flux onto a receiver. Temperatures up to
1000 K can be generated by this means, high enough to produce the
high-pressure steam used in modern steam turbines to generate
electricity.
Can solar thermal conversion become economically competitive with
combustion of fossil fuels as a source of high-temperature heat?
What are the best designs for the collection and conversion of
sunlight in a solar thermal facility?
What are the best uses of the high-temperature heat from solar
thermal conversion?
Sustainable Energy Science and Engineering Center
Collection
The temperature to which a surface is heated by a certain flux of
incident solar energy is determined by the balance of incident
radiation and loss by conduction, convection and radiation.
The use of selective surfaces that absorb visible sunlight but do not
lose energy by infrared radiation will achieve high temperatures.
The temperature obtained can be increased by boosting the flux
of incident sunlight by use of concentrating mirrors or lenses.
A fairly low concentration ratio, obtainable with simple optics, can
be combined with a selective surface to efficiently produce
temperatures high enough for electrical power generation.
Three basic collection geometries of sunlight for solar thermal
conversion: non-concentrating, concentrating to a line, and
concentrating to a point.
Sustainable Energy Science and Engineering Center
Collection
Non concentrating collectors: Industrial process heat at moderate
temperatures (About 18% of the fuel consumption in the United
States is for generation of industrial process heat at moderate
temperatures (process steam) and another 11.5% is used for
high-temperature process heat). Low temperature heat for
domestic water heating.
Concentration to a line: concentration ratios up to 20 with
selective surfaces to achieve high enough temperatures for
electrical generation
Point focusing: concentration ratios up to 1000, with out the need
for use of selective surfaces. (Thermochemical conversion -
splitting of water to produce hydrogen)
Sustainable Energy Science and Engineering Center
Area concentration ratio (geometric):
Concentration Ratio
C =
Aa
Ar
Sun
Optical concentration ratio:
Ir is the averaged irradiance
Ia is the insolation incident on the collector aperture
CO =
1
Ar
IrdAr
∫
Ia
Aperture Receiver
Sun @ Ts
Sustainable Energy Science and Engineering Center
a) Tubular absorbers with diffusive back reflector; b) Tubular absorbers with
specular cusp reflector; c) Plane receiver with plane reflector; d) parabolic
concentrator; e) Fresnel reflector f) Array of heliostats with central receiver
Collector Configurations
Goal: Increasing the radiation flux on receivers
Sustainable Energy Science and Engineering Center
(a) parabolic trough collector
(b) linear Fresnel collector
(c) central receiver system with dish
collector and
(d) central receiver system with
distributed reflectors
Sun Radiation Concentration
Sustainable Energy Science and Engineering Center
Parabolic-Trough Technology
Source: US DOE
Sustainable Energy Science and Engineering Center
Parabolic-Trough Technology
Solar-electric efficiency : 10%
Levelized energy cost: $0.04-
0.05/kWh
Solar Electric Generating Station (SEGS)
Sustainable Energy Science and Engineering Center
Tracking Parabolic Trough Collector
Sustainable Energy Science and Engineering Center
Parabolic-Trough System
Source: US DOE
Sustainable Energy Science and Engineering Center
Solar Dish-engine
Sustainable Energy Science and Engineering Center
Solar Dish-engine
Source: US DOE
Sustainable Energy Science and Engineering Center
Power Tower
Sustainable Energy Science and Engineering Center
Power Tower - Solar two
Source: US DOE
Sustainable Energy Science and Engineering Center
Source: Sandia National Laboratories
Solar Power Tower
Molten-salt power tower system
Electric power from sunlight
by focusing concentrated
solar radiation on a tower-
mounted heat exchanger.
Best suited for large scale
applications: 30-400 MW
Liquid salt at 290oC is
pumped from a storage
tank through the receiver
where it is at 565oC and
then to a hot storage tank.
The hot salt is pumped to a
steam generating system
that produces superheated
steam for a conventional
Rankine cycle turbine
generator system.
Sustainable Energy Science and Engineering Center
Solar Power Tower
Electricity dispatchability
Sustainable Energy Science and Engineering Center
Thermal Storage
Thermal Loss
Sustainable Energy Science and Engineering Center
A solar chimney power plant has a high chimney
(tower), with a height of up to 1000 m, and this is
surrounded by a large collector roof, up to 130 m in
diameter, that consists of glass or resistive plastic
supported on a framework (see artist’s impression).
Towards its centre, the roof curves upwards to join the
chimney, creating a funnel. The sun heats up the
ground and the air underneath the collector roof, and
the heated air follows the upward incline of the roof
until it reaches the chimney. There, it flows at high
speed through the chimney and drives wind generators
at its bottom. The ground under the collector roof
behaves as a storage medium, and can even heat up
the air for a significant time after sunset. The efficiency
of the solar chimney power plant is below 2%, and
depends mainly on the height of the tower, and so
these power plants can only be constructed on land
which is very cheap or free. Such areas are usually
situated in desert regions. However, the whole power
plant is not without other uses, as the outer area under
the collector roof can also be utilized as a greenhouse
for agricultural purposes. As with trough and tower
plants, the minimum economical size of solar chimney
power plants is also in the multi-megawatt range.
Solar Chimney/Tower
Source: www.sbp.de
Sustainable Energy Science and Engineering Center
Solar Chimney/Tower
Sustainable Energy Science and Engineering Center
Advanced Tower
Sustainable Energy Science and Engineering Center
Commercial Solar Plant Costs
Levelized energy cost
Solar Electric Generating Systems (SEGS)
Sustainable Energy Science and Engineering Center
System Efficiency
Sustainable Energy Science and Engineering Center
Source: US DOE
US Solar Radiation Map
Sustainable Energy Science and Engineering Center
The Solar Resource
Sustainable Energy Science and Engineering Center
Solar thermal Electric Power systems
Source: US DOE
Sustainable Energy Science and Engineering Center
Flat Plate Collectors -
Domestic Heating
Sustainable Energy Science and Engineering Center
Flat-Plate Collectors
In the solar collector, the energy transfer is from source of radiant
energy to a fluid.
The flux of incident radiation ~ 1000 W/m2 ( it is variable)
The wavelength range: 0.3 - 3.0 µm
Energy delivery at moderate temperatures ~ 400K
Use both beam and diffusive solar radiation - do not require tracking
the Sun.
Major applications: solar water heating, building heating, air
conditioning and industrial process heat.
Maximum temperature ~ 400K
Source: Solar Engineering of Thermal processes by Duffie & Beckman, chapter 6.
Sustainable Energy Science and Engineering Center
Basic Flat-Plate Collector
Sustainable Energy Science and Engineering Center
Water Heater Configurations
Natural circulation system
One tank forced circulation system
Antifreeze loop and internal heat
exchanger
Antifreeze loop and external heat
exchanger
Sustainable Energy Science and Engineering Center
Liquid Heating Collector System
Sustainable Energy Science and Engineering Center
Solar Thermal Conversion
Technology Temperature (o
C) Concentrati
on ratio
Tracking Maximum
conversion
efficiency
(Carnot)
Dish
Concentrators
50 - 1000 80 - 8000 Two-axis 80%
Heliostat field
+ Central
receiver
500-800 600-1000 Two-axis 73%
Parabolic
trough
260-400 8-90 One-axis 56%
Flat plate
collector
30-100 1 21%
Sustainable Energy Science and Engineering Center
Southwest Strategy
Source: Luc Moens. NREL; GCEP Workshop, October, 2004
Sustainable Energy Science and Engineering Center
Solar Thermal Power Plant Potential
Comparably low power generation costs can be achieved wherever
insolation reaches 1,900 kWh per square meter and year or more.

More Related Content

Similar to SolarThermal.pdf

Fabrication, Designing & Performance Analysis of Solar Parabolic Trough
Fabrication, Designing & Performance Analysis of Solar Parabolic TroughFabrication, Designing & Performance Analysis of Solar Parabolic Trough
Fabrication, Designing & Performance Analysis of Solar Parabolic Trough
IJERA Editor
 
Improvements in efficiency of solar parabolic trough
Improvements in efficiency of solar parabolic troughImprovements in efficiency of solar parabolic trough
Improvements in efficiency of solar parabolic trough
IOSR Journals
 
Analysis of Induction Generator for Geothermal Power Generation System
Analysis of Induction Generator for Geothermal Power Generation SystemAnalysis of Induction Generator for Geothermal Power Generation System
Analysis of Induction Generator for Geothermal Power Generation System
ijtsrd
 
Ciclo de rankine con regeneración
Ciclo de rankine con regeneraciónCiclo de rankine con regeneración
Ciclo de rankine con regeneración
pipeq
 
Implementation of renewable energy resources in india-solar updraft tower
Implementation of renewable energy resources in india-solar updraft towerImplementation of renewable energy resources in india-solar updraft tower
Implementation of renewable energy resources in india-solar updraft tower
Neha Chouhan
 
Cf32949954
Cf32949954Cf32949954
Cf32949954
IJMER
 
Synopsis of steam power plant system
Synopsis of steam power plant systemSynopsis of steam power plant system
Synopsis of steam power plant system
mundaa
 

Similar to SolarThermal.pdf (20)

Solar thermal power
Solar thermal powerSolar thermal power
Solar thermal power
 
Solar parabolic collector
Solar parabolic collectorSolar parabolic collector
Solar parabolic collector
 
seminar report on solar power tower
seminar report on solar power towerseminar report on solar power tower
seminar report on solar power tower
 
SOLAR UPGRADE TOWER
SOLAR UPGRADE TOWERSOLAR UPGRADE TOWER
SOLAR UPGRADE TOWER
 
Solar energy
Solar energySolar energy
Solar energy
 
Chapter 12 Solar Energy.pdf
Chapter 12 Solar Energy.pdfChapter 12 Solar Energy.pdf
Chapter 12 Solar Energy.pdf
 
SOLAR REFRIGERATION SYSTEM
SOLAR REFRIGERATION SYSTEM SOLAR REFRIGERATION SYSTEM
SOLAR REFRIGERATION SYSTEM
 
Energy(2021-22).pptx
Energy(2021-22).pptxEnergy(2021-22).pptx
Energy(2021-22).pptx
 
Solar energy
Solar energySolar energy
Solar energy
 
Fabrication, Designing & Performance Analysis of Solar Parabolic Trough
Fabrication, Designing & Performance Analysis of Solar Parabolic TroughFabrication, Designing & Performance Analysis of Solar Parabolic Trough
Fabrication, Designing & Performance Analysis of Solar Parabolic Trough
 
Improvements in efficiency of solar parabolic trough
Improvements in efficiency of solar parabolic troughImprovements in efficiency of solar parabolic trough
Improvements in efficiency of solar parabolic trough
 
Analysis of Induction Generator for Geothermal Power Generation System
Analysis of Induction Generator for Geothermal Power Generation SystemAnalysis of Induction Generator for Geothermal Power Generation System
Analysis of Induction Generator for Geothermal Power Generation System
 
Ciclo de rankine con regeneración
Ciclo de rankine con regeneraciónCiclo de rankine con regeneración
Ciclo de rankine con regeneración
 
L1 Solar Energy--The Ultimate Renewable Resource.ppt
L1 Solar Energy--The Ultimate  Renewable Resource.pptL1 Solar Energy--The Ultimate  Renewable Resource.ppt
L1 Solar Energy--The Ultimate Renewable Resource.ppt
 
Implementation of renewable energy resources in india-solar updraft tower
Implementation of renewable energy resources in india-solar updraft towerImplementation of renewable energy resources in india-solar updraft tower
Implementation of renewable energy resources in india-solar updraft tower
 
Cf32949954
Cf32949954Cf32949954
Cf32949954
 
Solar Thermal in power generation for cleaner
Solar Thermal in power generation for cleanerSolar Thermal in power generation for cleaner
Solar Thermal in power generation for cleaner
 
Solar Panel
Solar PanelSolar Panel
Solar Panel
 
RESS 16M.pdf
RESS 16M.pdfRESS 16M.pdf
RESS 16M.pdf
 
Synopsis of steam power plant system
Synopsis of steam power plant systemSynopsis of steam power plant system
Synopsis of steam power plant system
 

More from anaveenkumar4

Batch 6.pptx
Batch 6.pptxBatch 6.pptx
Batch 6.pptx
anaveenkumar4
 
9-_Object_Oriented_Programming_Using_Python.pdf
9-_Object_Oriented_Programming_Using_Python.pdf9-_Object_Oriented_Programming_Using_Python.pdf
9-_Object_Oriented_Programming_Using_Python.pdf
anaveenkumar4
 

More from anaveenkumar4 (13)

Python Tutorial | Python Programming Language
Python Tutorial | Python Programming LanguagePython Tutorial | Python Programming Language
Python Tutorial | Python Programming Language
 
04_python_functions.ppt You can define functions to provide the required func...
04_python_functions.ppt You can define functions to provide the required func...04_python_functions.ppt You can define functions to provide the required func...
04_python_functions.ppt You can define functions to provide the required func...
 
Electric circuits are classified in several ways. A direct-current circuit ca...
Electric circuits are classified in several ways. A direct-current circuit ca...Electric circuits are classified in several ways. A direct-current circuit ca...
Electric circuits are classified in several ways. A direct-current circuit ca...
 
MATLAB UNIT-III.pptx
MATLAB UNIT-III.pptxMATLAB UNIT-III.pptx
MATLAB UNIT-III.pptx
 
project.pptx
project.pptxproject.pptx
project.pptx
 
pump.ppt
pump.pptpump.ppt
pump.ppt
 
RET UNIT-4.pptx
RET UNIT-4.pptxRET UNIT-4.pptx
RET UNIT-4.pptx
 
13012-41797-1-RV.pdf
13012-41797-1-RV.pdf13012-41797-1-RV.pdf
13012-41797-1-RV.pdf
 
1-s2.0-S1878029613000716-main.pdf
1-s2.0-S1878029613000716-main.pdf1-s2.0-S1878029613000716-main.pdf
1-s2.0-S1878029613000716-main.pdf
 
2_Off_Grid_Grid_Tied.pptx
2_Off_Grid_Grid_Tied.pptx2_Off_Grid_Grid_Tied.pptx
2_Off_Grid_Grid_Tied.pptx
 
TRAINING PROGRAMME ON MATLAB ASSOCIATE EXAM (1).pptx
TRAINING PROGRAMME ON MATLAB  ASSOCIATE EXAM (1).pptxTRAINING PROGRAMME ON MATLAB  ASSOCIATE EXAM (1).pptx
TRAINING PROGRAMME ON MATLAB ASSOCIATE EXAM (1).pptx
 
Batch 6.pptx
Batch 6.pptxBatch 6.pptx
Batch 6.pptx
 
9-_Object_Oriented_Programming_Using_Python.pdf
9-_Object_Oriented_Programming_Using_Python.pdf9-_Object_Oriented_Programming_Using_Python.pdf
9-_Object_Oriented_Programming_Using_Python.pdf
 

Recently uploaded

Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
Epec Engineered Technologies
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Kandungan 087776558899
 
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 

Recently uploaded (20)

Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
Theory of Time 2024 (Universal Theory for Everything)
Theory of Time 2024 (Universal Theory for Everything)Theory of Time 2024 (Universal Theory for Everything)
Theory of Time 2024 (Universal Theory for Everything)
 
Electromagnetic relays used for power system .pptx
Electromagnetic relays used for power system .pptxElectromagnetic relays used for power system .pptx
Electromagnetic relays used for power system .pptx
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdf
 
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Signal Processing and Linear System Analysis
Signal Processing and Linear System AnalysisSignal Processing and Linear System Analysis
Signal Processing and Linear System Analysis
 
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.
 
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
 
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
 
Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.ppt
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesLinux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
 

SolarThermal.pdf

  • 1. Sustainable Energy Science and Engineering Center Solar Thermal Conversion Major Functions: • Solar Radiation collection and concentration • Conversion to heat • Storage of energy • Generation of electricity
  • 2. Sustainable Energy Science and Engineering Center Solar Thermal Conversion Solar energy is collected as high-temperature heat, generally by means of mirrors or lenses that track the motion of the sun and direct a concentrated solar flux onto a receiver. Temperatures up to 1000 K can be generated by this means, high enough to produce the high-pressure steam used in modern steam turbines to generate electricity. Can solar thermal conversion become economically competitive with combustion of fossil fuels as a source of high-temperature heat? What are the best designs for the collection and conversion of sunlight in a solar thermal facility? What are the best uses of the high-temperature heat from solar thermal conversion?
  • 3. Sustainable Energy Science and Engineering Center Collection The temperature to which a surface is heated by a certain flux of incident solar energy is determined by the balance of incident radiation and loss by conduction, convection and radiation. The use of selective surfaces that absorb visible sunlight but do not lose energy by infrared radiation will achieve high temperatures. The temperature obtained can be increased by boosting the flux of incident sunlight by use of concentrating mirrors or lenses. A fairly low concentration ratio, obtainable with simple optics, can be combined with a selective surface to efficiently produce temperatures high enough for electrical power generation. Three basic collection geometries of sunlight for solar thermal conversion: non-concentrating, concentrating to a line, and concentrating to a point.
  • 4. Sustainable Energy Science and Engineering Center Collection Non concentrating collectors: Industrial process heat at moderate temperatures (About 18% of the fuel consumption in the United States is for generation of industrial process heat at moderate temperatures (process steam) and another 11.5% is used for high-temperature process heat). Low temperature heat for domestic water heating. Concentration to a line: concentration ratios up to 20 with selective surfaces to achieve high enough temperatures for electrical generation Point focusing: concentration ratios up to 1000, with out the need for use of selective surfaces. (Thermochemical conversion - splitting of water to produce hydrogen)
  • 5. Sustainable Energy Science and Engineering Center Area concentration ratio (geometric): Concentration Ratio C = Aa Ar Sun Optical concentration ratio: Ir is the averaged irradiance Ia is the insolation incident on the collector aperture CO = 1 Ar IrdAr ∫ Ia Aperture Receiver Sun @ Ts
  • 6. Sustainable Energy Science and Engineering Center a) Tubular absorbers with diffusive back reflector; b) Tubular absorbers with specular cusp reflector; c) Plane receiver with plane reflector; d) parabolic concentrator; e) Fresnel reflector f) Array of heliostats with central receiver Collector Configurations Goal: Increasing the radiation flux on receivers
  • 7. Sustainable Energy Science and Engineering Center (a) parabolic trough collector (b) linear Fresnel collector (c) central receiver system with dish collector and (d) central receiver system with distributed reflectors Sun Radiation Concentration
  • 8. Sustainable Energy Science and Engineering Center Parabolic-Trough Technology Source: US DOE
  • 9. Sustainable Energy Science and Engineering Center Parabolic-Trough Technology Solar-electric efficiency : 10% Levelized energy cost: $0.04- 0.05/kWh Solar Electric Generating Station (SEGS)
  • 10. Sustainable Energy Science and Engineering Center Tracking Parabolic Trough Collector
  • 11. Sustainable Energy Science and Engineering Center Parabolic-Trough System Source: US DOE
  • 12. Sustainable Energy Science and Engineering Center Solar Dish-engine
  • 13. Sustainable Energy Science and Engineering Center Solar Dish-engine Source: US DOE
  • 14. Sustainable Energy Science and Engineering Center Power Tower
  • 15. Sustainable Energy Science and Engineering Center Power Tower - Solar two Source: US DOE
  • 16. Sustainable Energy Science and Engineering Center Source: Sandia National Laboratories Solar Power Tower Molten-salt power tower system Electric power from sunlight by focusing concentrated solar radiation on a tower- mounted heat exchanger. Best suited for large scale applications: 30-400 MW Liquid salt at 290oC is pumped from a storage tank through the receiver where it is at 565oC and then to a hot storage tank. The hot salt is pumped to a steam generating system that produces superheated steam for a conventional Rankine cycle turbine generator system.
  • 17. Sustainable Energy Science and Engineering Center Solar Power Tower Electricity dispatchability
  • 18. Sustainable Energy Science and Engineering Center Thermal Storage Thermal Loss
  • 19. Sustainable Energy Science and Engineering Center A solar chimney power plant has a high chimney (tower), with a height of up to 1000 m, and this is surrounded by a large collector roof, up to 130 m in diameter, that consists of glass or resistive plastic supported on a framework (see artist’s impression). Towards its centre, the roof curves upwards to join the chimney, creating a funnel. The sun heats up the ground and the air underneath the collector roof, and the heated air follows the upward incline of the roof until it reaches the chimney. There, it flows at high speed through the chimney and drives wind generators at its bottom. The ground under the collector roof behaves as a storage medium, and can even heat up the air for a significant time after sunset. The efficiency of the solar chimney power plant is below 2%, and depends mainly on the height of the tower, and so these power plants can only be constructed on land which is very cheap or free. Such areas are usually situated in desert regions. However, the whole power plant is not without other uses, as the outer area under the collector roof can also be utilized as a greenhouse for agricultural purposes. As with trough and tower plants, the minimum economical size of solar chimney power plants is also in the multi-megawatt range. Solar Chimney/Tower Source: www.sbp.de
  • 20. Sustainable Energy Science and Engineering Center Solar Chimney/Tower
  • 21. Sustainable Energy Science and Engineering Center Advanced Tower
  • 22. Sustainable Energy Science and Engineering Center Commercial Solar Plant Costs Levelized energy cost Solar Electric Generating Systems (SEGS)
  • 23. Sustainable Energy Science and Engineering Center System Efficiency
  • 24. Sustainable Energy Science and Engineering Center Source: US DOE US Solar Radiation Map
  • 25. Sustainable Energy Science and Engineering Center The Solar Resource
  • 26. Sustainable Energy Science and Engineering Center Solar thermal Electric Power systems Source: US DOE
  • 27. Sustainable Energy Science and Engineering Center Flat Plate Collectors - Domestic Heating
  • 28. Sustainable Energy Science and Engineering Center Flat-Plate Collectors In the solar collector, the energy transfer is from source of radiant energy to a fluid. The flux of incident radiation ~ 1000 W/m2 ( it is variable) The wavelength range: 0.3 - 3.0 µm Energy delivery at moderate temperatures ~ 400K Use both beam and diffusive solar radiation - do not require tracking the Sun. Major applications: solar water heating, building heating, air conditioning and industrial process heat. Maximum temperature ~ 400K Source: Solar Engineering of Thermal processes by Duffie & Beckman, chapter 6.
  • 29. Sustainable Energy Science and Engineering Center Basic Flat-Plate Collector
  • 30. Sustainable Energy Science and Engineering Center Water Heater Configurations Natural circulation system One tank forced circulation system Antifreeze loop and internal heat exchanger Antifreeze loop and external heat exchanger
  • 31. Sustainable Energy Science and Engineering Center Liquid Heating Collector System
  • 32. Sustainable Energy Science and Engineering Center Solar Thermal Conversion Technology Temperature (o C) Concentrati on ratio Tracking Maximum conversion efficiency (Carnot) Dish Concentrators 50 - 1000 80 - 8000 Two-axis 80% Heliostat field + Central receiver 500-800 600-1000 Two-axis 73% Parabolic trough 260-400 8-90 One-axis 56% Flat plate collector 30-100 1 21%
  • 33. Sustainable Energy Science and Engineering Center Southwest Strategy Source: Luc Moens. NREL; GCEP Workshop, October, 2004
  • 34. Sustainable Energy Science and Engineering Center Solar Thermal Power Plant Potential Comparably low power generation costs can be achieved wherever insolation reaches 1,900 kWh per square meter and year or more.