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Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University

Dizon, James A. Warner D. Cunanan John Rey B. Datu Victor Paolo A. Tolentino Justine Y. Malit Freneil R. Pampo Edward Joseph Agustin

Subject area: Science,Engineering and Technology  ·  Area of research: Renewable Energy

Abstract

The world's expanding need for electrical energy has generated climate change, which is driven by reliance on fossil fuels that increase carbon dioxide. In response to the increased need for electricity, eco-friendly renewable energy sources were established. Renewable energy comes from various environmental sources. Solar Updraft tower combines solar and wind energy. This study looked at SUT generation and DHVSU kilowatt demand. This study assesses Solar Updraft Tower's power output using mathematical equations from related studies. Possible SUT power generation was reduced to the school's kW demand. The study found that SUT can create a little amount of electrical energy and reduce DHVSU's kilowatt consumption by 5.52% yearly.

References

[1] Constant Volume - an overview | ScienceDirect Topics. (n.d.). Www.sciencedirect.com. Retrieved June 4, 2022, from https://www.sciencedirect.com/topics/mathemat ics/constant- volume#:~:text=The%20specific%20heat%20of %20a Ahmed, B. (n.d.). DESIGN AND THERMODYNAMIC ANALYSIS OF SOLAR UPDRAFT TOWER. Retrieved June 4, 2022, from https://www.theseus.fi/bitstream/handle/10024/ 33264/babaleye_ahmed.pdf?sequence=2 Constant Volume - an overview | ScienceDirect Topics. (n.d.). Www.sciencedirect.com. https://www.sciencedirect.com/topics/mathemat ics/constant- volume#:~:text=The%20specific%20heat%20of %20a

[2] Ideal Gases under Constant Volume, Constant

[3] Pressure, Constant Temperature, & AdiabaticConditions. (n.d.). Www.grc.nasa.gov. https://www.grc.nasa.gov/www/k- 12/Numbers/Math/Mathematical_Thinking/idea l_gases_under_constant.htm

[4] Hadyan Hafizh, Hiromichi Shirato, and Daiki Yui (2016,) Performance Analysis of Solar Updraft Power Generator in Indonesia. file:///C:/Users/Windows%2010%20Pro%2064 Bit/Downloads/512-Article%20Text-3254-3-10- 20160920.pdf

[5] Raney, S. M., Brooks, J. R., Schaffer, J. P., & French, J. J. (2012). Experimental Validation of Solar Chimney Performance Models and Operational Characteristics for Small Scale Remote Applications. ASME 2012 6th International Conference on Energy Sustainability, https://sci- hub.hkvisa.net/10.1115/ES2012-91192

[6] Solar Energy. (2020). In H. Tyagi, P. R. Chakraborty, S. Powar, & A. K. Agarwal (Eds.), Energy, Environment, and Sustainability. Springer Singapore. https://sci- hub.hkvisa.net/10.1007/978-981-15-0675-8

[7] Kalash, S., Naimeh, W., & Ajib, S. (2014). A Review of Sloped Solar Updraft Power Technology. Energy Procedia, 50, 222–228. https://

How to cite this paper

Dizon, James A., Warner D. Cunanan, John Rey B. Datu, Victor Paolo A. Tolentino; Justine Y. Malit, Freneil R. Pampo; Edward Joseph Agustin "Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University" Iconic Research And Engineering Journals Volume 6 Issue 1 2022 Page 336-350
Dizon, James A., Warner D. Cunanan, John Rey B. Datu, Victor Paolo A. Tolentino; Justine Y. Malit, Freneil R. Pampo; Edward Joseph Agustin "Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University" Iconic Research And Engineering Journals, vol. 6, no. 1, Jul. 2022
Dizon, James A., Warner D. Cunanan, John Rey B. Datu, Victor Paolo A. Tolentino; Justine Y. Malit, Freneil R. Pampo; Edward Joseph Agustin (2022). Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University. Iconic Research And Engineering Journals, 6(1).
Dizon, James A., Warner D. Cunanan, John Rey B. Datu, Victor Paolo A. Tolentino; Justine Y. Malit, Freneil R. Pampo; Edward Joseph Agustin "Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University" Iconic Research And Engineering Journals, vol. 6, no. 1, Jul. 2022.
@article{1703649,
      author = {Dizon, James A., Warner D. Cunanan, John Rey B. Datu, Victor Paolo A. Tolentino; Justine Y. Malit, Freneil R. Pampo; Edward Joseph Agustin},
      title = {Energy Harvesting Potential of Solar Updraft Tower in Don Honorio Ventura State University},
      journal = {Iconic Research And Engineering Journals},
      year = {2022},
      volume = {6},
      number = {1},
      pages = {336-350},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1703649.pdf},
      abstract = {The world's expanding need for electrical energy has generated climate change, which is driven by reliance on fossil fuels that increase carbon dioxide. In response to the increased need for electricity, eco-friendly renewable energy sources were established. Renewable energy comes from various environmental sources. Solar Updraft tower combines solar and wind energy. This study looked at SUT generation and DHVSU kilowatt demand. This study assesses Solar Updraft Tower's power output using mathematical equations from related studies. Possible SUT power generation was reduced to the school's kW demand. The study found that SUT can create a little amount of electrical energy and reduce DHVSU's kilowatt consumption by 5.52% yearly.},
      month = {July},
  }