Solar air heater for residential space heating
Pradyumna Kumar Choudhury , Debendra Chandra Baruah
Energy, Ecology and Environment ›› 2017, Vol. 2 ›› Issue (6) : 387 -403.
Solar air heater for residential space heating
Space heating appliances require significant amount of primary as well as secondary energy. In most of the countries, energy requirements for such utilities are met by burning fossil fuel or from conventional electricity. Such usual practices for space heating result in significant increase in greenhouse gas emission and fossil fuel depletion. In the line of global emphasis on energy conservation and switch-to-clean energy approach, solar thermal energy can be harnessed using solar air heater for space heating purpose. This paper studies the potential of using solar air heater in space heating applications. Associated critical issues like demand–supply mismatch, installation space constraint, annual utilization factor and undesirable variations in output temperature are highlighted. Further, current research trends toward improving applicability of solar air heater are also briefly discussed.
Space heating / Solar air heater / Solar thermal application / Domestic heating / Solar air heater application
| [1] |
|
| [2] |
Alfarra H, Stevenson V, Jones P (2013) Architectural integration of transpired solar thermal for space heating in domestic and nondomestic building envelopes. CISBAT - September 4–6, Lausanne, Switzerland pp 631–636 |
| [3] |
Annual (2016) http://www.metoffice.gov.uk/climate/uk/summaries/2016/annual. Accessed Jan 2017 |
| [4] |
Australian Energy Update (2016) Australian energy statistics, Department of industries, innovation and science, Australian Government |
| [5] |
Azzouzi M, Attia B, Hourier B, Messaoudi M (2011) Realization of solar water heating controlling board. In: International conference on multimedia computing and systems (ICMCS), IEEE |
| [6] |
|
| [7] |
|
| [8] |
|
| [9] |
|
| [10] |
|
| [11] |
|
| [12] |
|
| [13] |
|
| [14] |
Building Energy Use in China (2015) Transforming Construction and Influencing Consumption to 2050, Partner Country Series, International Energy Agency. https://www.iea.org/publications/freepublications/publication/PARTNERCOUNTRYSERIESBuildingEnergy_WEB_FINAL.pdf.. Accessed Jan 2017 |
| [15] |
|
| [16] |
|
| [17] |
|
| [18] |
|
| [19] |
|
| [20] |
Clean Energy Project Analysis (2005) third edition 2005. RET Screen International, Canada |
| [21] |
CO2 Emissions from Fuel Combustion, IEA Statistics, 2015 Edition, International Energy Agency |
| [22] |
|
| [23] |
|
| [24] |
|
| [25] |
Eisentraut A, Brown A (2014) Heating without global warming: market developments and policy considerations for renewable heat. International Energy Agency |
| [26] |
Energy and Climate Change: World Energy Outlook Special Briefing for COP21, International Energy Agency, 2015 |
| [27] |
Energy Consumption In The UK November 2016 Update. https://www.gov.uk/government/uploads/system/uploads/attachment_data/file/573269/ECUK_November_2016.pdf. Accessed Jan 2017 |
| [28] |
Energy Efficiency Trends in Canada 1990–2013 https://www.nrcan.gc.ca/sites/www.nrcan.gc.ca/files/energy/pdf/trends2013.pdf. Accessed Jan 2017 |
| [29] |
Enerconcept. http://www.enerconcept.com/en/solar-air-heating-products/lubi/. Accessed May 2017 |
| [30] |
Faninger G (2010) The potential of solar thermal technologies in a sustainable energy future 2010. International Energy Agency Solar Heating and Cooling Programme |
| [31] |
|
| [32] |
|
| [33] |
|
| [34] |
Grammer-solar. http://www.download.grammer-solar.com/gsdownloads/English/II_SolarAir/06-Data%20Sheets/TechnicalDataSheet_TwinSolarCompact-EN.pdf. Accessed May 2017 |
| [35] |
|
| [36] |
Haller M, Frank E (2011) On the potential of using heat from solar thermal collectors for heat pump evaporators. ISES Solar Word Congress, 28th August–2nd September, Kassel, Germany |
| [37] |
Hasan M, Arifin K, Rahman AAzad A (2011) Design, implementation and performance of a controller for uninterruptible solar hot water system. In: 18th international conference on industrial engineering and engineering management (IE&EM) IEEE 2011; volume: part 1 |
| [38] |
http://solar-district-heating.eu/. Accessed Jan 2016 |
| [39] |
http://www.cop21paris.org. Accessed Jan 2016 |
| [40] |
http://www.weatheronline.co.uk/reports/climate/Jordan.htm. Accessed Jan 2017 |
| [41] |
https://energy.gov/energysaver/active-solar-heating. Accessed May 2017 |
| [42] |
https://www.eia.gov/outlooks/ieo/buildings.cfm. Accessed May 2017 |
| [43] |
www.grammer-solar.de. Accessed May 2017 |
| [44] |
http://www.cansolair.com/. Accessed May 2017 |
| [45] |
http://www.shetland.climatemps.com. Accessed Nov 2015 |
| [46] |
India Solar Handbook, Bridge To India (2014) http://www.bridgetoindia.com/wp-content/uploads/2014/06/BRIDGE-TO-INDIA_India-Solar-Handbook_June-2014.pdf. Accessed January 2017 |
| [47] |
International Energy Outlook (2016) http://www.eia.gov/outlooks/ieo/pdf/0484(2016).pdf. Accessed Jan 2017 |
| [48] |
|
| [49] |
|
| [50] |
Jairath AK, Kumar S, Yadav G (2015) Utilizing solar energy for room airconditioning system. In: 2015 fifth international conference on advanced computing and communication technologies, IEEE, pp 183–188 |
| [51] |
|
| [52] |
|
| [53] |
|
| [54] |
|
| [55] |
Kumar K, Kurian C (2014) Model based control using C2000 microcontroller. In: International conference on advances in energy conversion technologies (ICAECT), IEEE, pp 13–20 |
| [56] |
|
| [57] |
Linking Heat and Electricity Systems (2014) Co-generation and district heating and cooling solutions for a clean energy future, International Energy Agency, 2014. https://www.iea.org/publications/freepublications/publication/linking-heat-and-electricity-systems.html. Accessed Jan 2016 |
| [58] |
|
| [59] |
|
| [60] |
|
| [61] |
Matrixairheating. http://www.matrixairheating.com/products.html. Accessed May 2017 |
| [62] |
Mauthner F, Weiss W Solar heat worldwide: markets and contribution to the energy supply 2011. International Energy Agency Solar Heating & Cooling Programme 2013 |
| [63] |
Mauthner F, Weiss W, Spork-Dur M (2016) Solar Heat Worldwide: Markets and Contribution to the Energy Supply 2014, International Energy Agency Solar Heating and Cooling Programme |
| [64] |
|
| [65] |
|
| [66] |
|
| [67] |
|
| [68] |
|
| [69] |
|
| [70] |
|
| [71] |
|
| [72] |
Pasetti G, Normey-Rico J (2014) Automation and energy optimization of a domestic solar heating unit. In: The fifth international renewable energy congress IREC, March 25–27, Hammamet, Tunisia |
| [73] |
|
| [74] |
|
| [75] |
|
| [76] |
|
| [77] |
|
| [78] |
|
| [79] |
|
| [80] |
|
| [81] |
Solardirect. http://solardirect.com/space-heating/space-heat.html; http://solardirect.com/space-heating/solarsheat/solarsheat.htm. Accessed May 2017 |
| [82] |
Solar Heating and Cooling Application Factsheet (2015) http://www.solarthermalworld.org/sites/gstec/files/story/2015-10-14/application_factsheet_swh_district_heating_networks.pdf. Accessed Jan 2016 |
| [83] |
Solar Thermal in the Mediterranean Region (2012) Solar thermal action plan 2012. OME Report for GSWH-UNEP-UNDP |
| [84] |
|
| [85] |
Tahat A, Abukhalaf M, Elmuhesen O (2011) Solar energy water heater remote monitoring and control system. In: International conference on electronic devices, systems and applications (ICEDSA) |
| [86] |
Tasnin W, Choudhury PK (2015) Design and development of an automatic solar water heater controller. In: 2015 international conference on energy, power and environment: towards sustainable growth (ICEPE), IEEE |
| [87] |
|
| [88] |
|
| [89] |
|
| [90] |
|
| [91] |
|
| [92] |
|
| [93] |
|
| [94] |
|
| [95] |
Weiss W., Bergmann I., Faninger G. Solar heating worldwide: markets and contribution to the energy supply 2001. International Energy Agency Solar Heating and Cooling Programme 2004 |
| [96] |
|
| [97] |
|
| [98] |
|
| [99] |
|
| [100] |
|
| [101] |
|
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