TY - JOUR T1 - Design and analysis of solar air heating system for room AU - Dilshad, Sidra AU - Khan Kasi, Jafar AU - Ullah, Sami AU - Khan Kasi, Ajab PY - 2019 DA - September Y2 - 2019 JF - Scientific Journal of Mehmet Akif Ersoy University JO - Techno-Science PB - Burdur Mehmet Akif Ersoy University WT - DergiPark SN - 2651-3722 SP - 55 EP - 62 VL - 2 IS - 3 LA - en AB - Humankind faces enormous challenges relating to energysupply and ecological safety.  Heatingsystem is an essential part of homes in colder area, which needs a lot ofenergy. In this work a solar air heating system is designed by using easilyaccessible materials to heat the room. The adoption of low cost materials andeasy design  represents the novelties ofthe proposed system as compare to the other commercial collectors.  This eco-friendly solar air heating systemconsists of flat plate collector (FPC), battery, solar cell and fans.  FPC consists of transparent glass, absorbingplate, insulating material and fluid (air). In this experiment flat plate collectors are used inclined vertically atthe angle of 45℃ near to the wall of the room which gives attractiveresults.  The results were obtained fromsouth face located room. The time of solar heating is about 7-8 hours on thedaily bases and an average temperature difference obtained was about 12℃ ascompared with the same dimension reference room. Experimental results concludethat this solar air heating system is able to heat the room in coldseasons.  Hence the system making veryimportant contribution for the saving of fossil fuels and diminution of carbonrelease on worldwide scale.  KW - Flat plate collector KW - Glazing KW - absorbing plate KW - solar KW - air heating system CR - [1]. Streimikiene, D., & Kasperowicz, R. (2016). Review of economic growth and energy consumption: A panel cointegration analysis for EU countries. Renewable and Sustainable Energy Reviews, 59, 1545-1549. CR - [2]. Hegazy, A. A. (2000). Comparative study of the performances of four photovoltaic/thermal solar air collectors. Energy Conversion and management, 41(8), 861-881. CR - [3]. Khan, Y., Kasi, J. K., & Kasi, A. K. (2019). Dehydration of vegetables by using indirect solar dryer. Scientific Journal of Mehmet Akif Ersoy University, 1(1), 22-28. CR - [4]. Parida, B., Iniyan, S., & Goic, R. (2011). A review of solar photovoltaic technologies. Renewable and sustainable energy reviews, 15(3), 1625-1636.. CR - [5]. Spandagos, C., & Ng, T. L. (2017). Equivalent full-load hours for assessing climate change impact on building cooling and heating energy consumption in large Asian cities. Applied energy, 189, 352-368. CR - [6]. Chan, H. Y., Riffat, S. B., & Zhu, J. (2010). Review of passive solar heating and cooling technologies. Renewable and Sustainable Energy Reviews, 14(2), 781-789. CR - [7]. Ullah, S., & Kasi, J. K. Fabrication of Low Cost Solar Flat Plate Collector. Scientific Journal of Mehmet Akif Ersoy University, 2(2), 27-31. CR - [8]. Pandey, K. M., & Chaurasiya, R. (2017). A review on analysis and development of solar flat plate collector. Renewable and Sustainable Energy Reviews, 67, 641-650. CR - [9]. Visa, I., Moldovan, M., & Duta, A. (2019). Novel triangle flat plate solar thermal collector for facades integration. Renewable Energy, 143, 252-262. CR - [10]. Adavbiele, A. S., & Aasa, S. A. (2012). Integrated flat plate solar thermoelectric system. European Journal of Scientific Research, 76(2), 253-270. CR - [11]. Chen, Q. F., Yuan, Z. X., Guo, Z. Q., & Zhao, Y. (2019). Practical performance of a small PTC solar heating system in winter. Solar Energy, 179, 119-127. CR - [12]. Chaichan, M. T., Abass, K. I., Al-Zubidi, D. S., & Kazem, H. A. (2016). Practical investigation of effectiveness of direct solar-powered air heater. International Journal of Advanced Engineering, Management and Science, 2(7). CR - [13]. Motte, F., Notton, G., Cristofari, C., & Canaletti, J. L. (2013). A building integrated solar collector: Performances characterization and first stage of numerical calculation. Renewable energy, 49, 1-5.Vestlund, J., Rönnelid, M., & Dalenbäck, J. O. (2009). Thermal performance of gas-filled flat plate solar collectors. Solar Energy, 83(6), 896-904. CR - [14]. Vestlund, J., Rönnelid, M., & Dalenbäck, J. O. (2009). Thermal performance of gas-filled flat plate solar collectors. Solar Energy, 83(6), 896-904. UR - https://dergipark.org.tr/en/pub/sjmakeu/issue//627097 L1 - https://dergipark.org.tr/en/download/article-file/819975 ER -