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EN
Warming Beehives with Solar Energy Stored in Water
Öz
This study presents the possibility of utilizing a passive solar system in sunny places, which collects solar energy by using a polyethylene sheet to trap the long-wave thermal radiation and store it in water for warming the internal environment of beehives and its effect on nest temperatures, honey area, pollen area, sealed brood area, and the number of occupied frames. A total of six Langstroth hives containing honeybee colonies of equal strength from the species of hybrid Carniolan are divided into two groups as follows: a control group (untreated hive), and modified beehives that have been treated with the solar energy storage system. The solar energy storage system consists of an insulated wooden drawer located under the beehive's bottom board, containing sealed water bags, and is covered with a polyethylene sheet. Solar energy stored in water is used to reduce the variation of inside air temperatures between daylight and nighttime. The highest values of the honey area, pollen area, sealed brood area, and the number of occupied frames (916 cm2, 842 cm2, 3688 cm2, and 9 frames, respectively) were obtained for the modified beehives at the end of March, while the lowest values (98 cm2, 219 cm2, 911 cm2, and 3 frames, respectively) were recorded for the control groups of beehives at the middle of January. In modified beehives treated with a solar energy storage system, there was a significant rise in hive temperature, honey area, pollen area, sealed brood area, and bee population. So, it is recommended to use the new modification for warming beehives.
Anahtar Kelimeler
Kaynakça
- Altun, A.A., 2012. Remote control of the temperature- humidity and climate in the beehives with solar-powered thermoelectric system. Journal of Control Engineering and Applied Informatics, 14(1): 93-99.
- Becher, M.A., Hildenbrandt, H., Hemelrijk, C.K., Moritz, R.F.A., 2010. Brood temperature, task division and colony survival in honeybees: A model. Ecological Modelling, 221(5): 769-776.
- Ben-Amor, H., Salhi, M., Ben-Zid, A., Verlodt, H., 1990. First results of heating greenhouses by a passive solar system in Gafsa (south-west of Tunisia). Acta Horticultural, 263: 131-138.
- Borges, F.V.B., Blochtein, B., 2006. Variação Sazonal das condições internas de colônias de Melipona marginata obscurior Moure, no Rio Grande do Sul, Brasil. Revista Brasileira de Zoologia, 23(3): 711-715.
- Braga, A.R., Furtado, L., Bezerra, A.D., Freitas, B., Cazier, J., Gomes, D.G., 2019. Applying the long-termmemory algorithm to forecast the rmoregulation capacity loss in honeybee colonies. In: CSBC 2019-10 Workshop de Computação Aplicadaà Gestãodo Meio Ambientee Recursos Naturais (WCAMA), pp. 1-14.
- Butler, N.J., 1985. A Home Greenhouse-Dream or Nightmare? MSU Cooperative Extension Service. (Accessed at: www.hobby-greenhouse.com/UMreport.htm.).
- Detroy, B.F., Erickson, E.H., Diehnelt, K., 1982. Plastic hive covers for outdoor wintering of honeybees. American Bee Journal, 122(8): 583-587.
- Dodoloğlu, A., Genç, F., 2002. Some physiological characteristics of Caucasian and Anatolian Honeybee (Apis mellifera L.) races and their crossbreeds. Turkish Journal of Veterinary & Animal Sciences, 26(4): 715-722. (In Turkish).
Ayrıntılar
Birincil Dil
İngilizce
Konular
-
Bölüm
Araştırma Makalesi
Yazarlar
Yayımlanma Tarihi
31 Ekim 2022
Gönderilme Tarihi
6 Haziran 2022
Kabul Tarihi
23 Ekim 2022
Yayımlandığı Sayı
Yıl 2022 Cilt: 9 Sayı: 3
APA
Al-rajhi, M. (2022). Warming Beehives with Solar Energy Stored in Water. Türkiye Tarımsal Araştırmalar Dergisi, 9(3), 286-294. https://doi.org/10.19159/tutad.1126564
AMA
1.Al-rajhi M. Warming Beehives with Solar Energy Stored in Water. TÜTAD. 2022;9(3):286-294. doi:10.19159/tutad.1126564
Chicago
Al-rajhi, Mohamed. 2022. “Warming Beehives with Solar Energy Stored in Water”. Türkiye Tarımsal Araştırmalar Dergisi 9 (3): 286-94. https://doi.org/10.19159/tutad.1126564.
EndNote
Al-rajhi M (01 Ekim 2022) Warming Beehives with Solar Energy Stored in Water. Türkiye Tarımsal Araştırmalar Dergisi 9 3 286–294.
IEEE
[1]M. Al-rajhi, “Warming Beehives with Solar Energy Stored in Water”, TÜTAD, c. 9, sy 3, ss. 286–294, Eki. 2022, doi: 10.19159/tutad.1126564.
ISNAD
Al-rajhi, Mohamed. “Warming Beehives with Solar Energy Stored in Water”. Türkiye Tarımsal Araştırmalar Dergisi 9/3 (01 Ekim 2022): 286-294. https://doi.org/10.19159/tutad.1126564.
JAMA
1.Al-rajhi M. Warming Beehives with Solar Energy Stored in Water. TÜTAD. 2022;9:286–294.
MLA
Al-rajhi, Mohamed. “Warming Beehives with Solar Energy Stored in Water”. Türkiye Tarımsal Araştırmalar Dergisi, c. 9, sy 3, Ekim 2022, ss. 286-94, doi:10.19159/tutad.1126564.
Vancouver
1.Mohamed Al-rajhi. Warming Beehives with Solar Energy Stored in Water. TÜTAD. 01 Ekim 2022;9(3):286-94. doi:10.19159/tutad.1126564
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