TOMCHILATIB SUGʻORISH TIZIMLARIDA QUYOSH ENERGIYASIDAN FOYDALANISH MUAMMOLARI

Authors

  • Sh.S Mannobboyev

Keywords:

tomchilatib sug‘orish, quyosh energiyasi, energiya saqlash, nasos tizimlari, qishloq xo‘jaligi.

Abstract

Ushbu maqolada O‘zbekistonning sug‘oriladigan adirlik hududlarida tomchilatib sug‘orish tizimlarini quyosh energiyasidan foydalanib elektr energiyasi bilan ta’minlash masalasi tahlil qilinadi. Quyosh energiyasidan foydalanish imkoniyatlari, mavjud muammolar va ularning yechimlari ko‘rib chiqiladi. Tadqiqot natijalari quyosh panellarining samaradorligini oshirish, energiya saqlash texnologiyalarini rivojlantirish va energiya tejovchi nasos tizimlaridan foydalanish orqali tomchilatib sug‘orish tizimlarining barqarorligini ta’minlash muhimligini ko‘rsatadi.

References

1. Goodenough, J. B., & Park, K. S. (2013). The Li-ion rechargeable battery: A perspective. Journal of the American Chemical Society, 135 (4), 1167-1176.

2. Dunn, B., Kamath, H., & Tarascon, J. M. (2011). *Electrical energy storage for the grid: A battery of choices. Science, 334 (6058), 928-935.

3. Palacin, M. R., & de Guibert, A. (2016). Why do batteries fail? Science, 351 (6273), 1253292.

4. Slater, M. D., Kim, D., Lee, E., & Johnson, C. S. (2013). Sodium-ion batteries. Advanced Functional Materials, 23(8), 947-958.

5. Hueso, K. B., Armand, M., & Rojo, T. (2013). *High temperature sodium batteries: Status, challenges and future trends. Energy & Environmental Science, 6 (3), 734-749.

6. Linden, D., & Reddy, T. B. (2010). Handbook of Batteries (4th ed.). McGraw-Hill Education. ‘

7. Yazami, R. (2018). Lithium-Ion Batteries: Science and Technologies. CRC Press.

8. Zhao, T., & Wang, C. (2021). Advances in Sodium-Ion Batteries. Springer.

9. Pistoia, G. (2014). Battery Operated Devices and Systems: From Portable Electronics to Industrial Products. Elsevier.

10. World Bank Group. (2020). Battery Storage for Renewables: Market Status and Technology Outlook. World Bank Publications.

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Published

2025-04-10