Araştırma Makalesi

Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model

Cilt: 35 Sayı: 5 1 Eylül 2024
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Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model

Öz

Rainwater harvesting has proven to be an alternative water supply scheme for sustainable water management of regions with limited water resources. In this paper, a linear programming (LP) model with daily time steps, which minimizes a rooftop rainwater harvesting system (RWHS) cost, is developed and used to calculate the optimum RWH tank size. The developed LP model is applied to the semi-arid Northern Cyprus in the Eastern Mediterranean. The analysis is carried out for 33 sites which receive average annual rainfall ranging from 292 mm to 548 mm to evaluate the spatial effect of rainfall characteristic and the water cost on the financial feasibility and performance of the RWHS. At 29 out of 33 sites, RWHS investments are found to be financially feasible with discounted payback periods ranging from 12 to 28 years. The optimum RWH tank sizes are determined to be between 2 m3 and 6 m3 resulting in up to 20 % reliability with more than 50 m3 of average annual water savings per house. It is observed that the cost of water is a critical factor that affects the financial feasibility and water savings of a RWHS, especially in regions with limited rainfall. The comparison of the developed daily LP model with an LP model with monthly time steps demonstrates that the financial feasibility and the optimum tank size can only be assessed realistically when daily time steps are used. Finally, the sensitivity analysis shows that the discounted payback period is highly sensitive to the collector area.

Anahtar Kelimeler

Teşekkür

The authors of this study thank to the Meteorological Authority of Northern Cyprus for providing the necessary rainfall data and we would also like to thank to Prof. Dr. Hasan Güngör for his valuable discussions.

Kaynakça

  1. UN (United Nations). (2015). International decade for action water for life 2005-2015. Retrieved July 25, 2020, from https://www.un.org/waterforlifedecade/water_and_sustainable_development.shtml
  2. Solomon, H., & Smith, H. H. (2007). Effectiveness of mandatory law of cistern construction for rainwater harvesting on supply and demand of public water in the U.S. Virgin Islands. Seventh Caribbean Islands Water Resources Congress, University of The Virgin Islands, St. Croix, USVI (pp. 75-80).
  3. Han, M., & Ki, J. (2010). Establishment of sustainable water supply system in small islands through rainwater harvesting (RWH): Case study of Guja-do. Water Science and Technology, 62(1), 148-153. https://doi.org/10.2166/wst.2010.299
  4. Wallace, C. D., Bailey, R. T., & Arabi, M. (2015). Rainwater catchment system design using simulated future climate data. Journal of Hydrology, 529, 1798-1809. https://doi.org/10.1016/j.jhydrol.2015.08.006
  5. Quigley, N., Beavis, S. G., & White, I. (2016). Rainwater harvesting augmentation of domestic water supply in Honiara, Solomon Islands. Australian Journal of Water Resources, 20(1), 65-77. https://doi.org/10.1080/13241583.2016.1173314
  6. Donohue, M. J., Macomber, P. S., Okimoto, D., & Lerner, D. T. (2017). Survey of Rainwater Catchment Use and Practices on Hawaii Island. Journal of Contemporary Water Research & Education, 161(1), 33-47. https://doi.org/10.1111/j.1936-704x.2017.3250.x
  7. Bailey, R. T., Beikmann, A., Kottermair, M., Taboroši, D., & Jenson, J. W. (2018). Sustainability of rainwater catchment systems for small island communities. Journal of Hydrology, 557, 137-146. https://doi.org/10.1016/j.jhydrol.2017.12.016
  8. Ruso, M. (2021). Rainwater Harvesting Analysis for Northern Cyprus [M.S. - Master of Science]. Middle East Technical University – Northern Cyprus Campus.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Su Hasadı, Su Kaynakları Mühendisliği

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

22 Nisan 2024

Yayımlanma Tarihi

1 Eylül 2024

Gönderilme Tarihi

14 Temmuz 2023

Kabul Tarihi

5 Nisan 2024

Yayımlandığı Sayı

Yıl 2024 Cilt: 35 Sayı: 5

Kaynak Göster

APA
Ruso, M., Akıntuğ, B., & Kentel, E. (2024). Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model. Turkish Journal of Civil Engineering, 35(5), 1-28. https://doi.org/10.18400/tjce.1326198
AMA
1.Ruso M, Akıntuğ B, Kentel E. Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model. tjce. 2024;35(5):1-28. doi:10.18400/tjce.1326198
Chicago
Ruso, Mustafa, Bertuğ Akıntuğ, ve Elcin Kentel. 2024. “Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model”. Turkish Journal of Civil Engineering 35 (5): 1-28. https://doi.org/10.18400/tjce.1326198.
EndNote
Ruso M, Akıntuğ B, Kentel E (01 Eylül 2024) Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model. Turkish Journal of Civil Engineering 35 5 1–28.
IEEE
[1]M. Ruso, B. Akıntuğ, ve E. Kentel, “Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model”, tjce, c. 35, sy 5, ss. 1–28, Eyl. 2024, doi: 10.18400/tjce.1326198.
ISNAD
Ruso, Mustafa - Akıntuğ, Bertuğ - Kentel, Elcin. “Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model”. Turkish Journal of Civil Engineering 35/5 (01 Eylül 2024): 1-28. https://doi.org/10.18400/tjce.1326198.
JAMA
1.Ruso M, Akıntuğ B, Kentel E. Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model. tjce. 2024;35:1–28.
MLA
Ruso, Mustafa, vd. “Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model”. Turkish Journal of Civil Engineering, c. 35, sy 5, Eylül 2024, ss. 1-28, doi:10.18400/tjce.1326198.
Vancouver
1.Mustafa Ruso, Bertuğ Akıntuğ, Elcin Kentel. Rainwater Harvesting System Analysis for Semi-Arid Climate: A Daily Linear Programming Model. tjce. 01 Eylül 2024;35(5):1-28. doi:10.18400/tjce.1326198

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