BOLALAR O‘YIN MAYDONCHALARINING EKOLOGIK DIZAYNI: KINETIK ENERGIYAGA ASOSLANGAN AVTONOM TIZIMLAR

Authors

  • Ergasheva Muxlisa Rustam qizi 1-Kurs magistri Sanoat dizayn kafedrasi I.Karimov. nomi. TDTU. Email: muxlisaxolboyeva@icloud.com Author
  • E.B. Abdullayev San’atshunoslik fanlar nomzodi (PHD), Katta o’qituvchi Sanoat dizayn kafedrasi I.Karimov. nomi. TDTU. Email:weartsoft@gmail.com Author

Keywords:

Metodlar bo‘limida adabiyot tahlili, texnologiyalar modellashtirish va energiya hisob-kitoblari tavsiflanadi. Natijalar qismida piezoelektr plitalar va dinamolar integratsiyasi asosidagi taklif etilgan model taqdim etiladi. Muhokama va xulosada ekologik, ijtimoiy va iqtisodiy afzalliklar, shuningdek O‘zbekiston uchun pilot loyihalar takliflari beriladi.

Abstract

Ushbu maqola bolalar o‘yin maydonchalarining ekologik toza dizaynini va kinetik energiya asosidagi avtonom tizimlarni o‘rganadi. Kirish qismida mavzuning dolzarbligi va barqaror rivojlanishdagi o‘rni ko‘rsatiladi. 

Downloads

Download data is not yet available.

References

Kemball-Cook, L. (2023). Electro-magnetic vs Piezoelectric energy harvesting. Pavegen Blog. Retrieved from https://www.pavegen.com/blog/electromagnetic-vs-piezo(Pavegen texnologiyasi: elektromagnit va piezoelektr taqqoslash, o‘yin maydonchalari uchun mos).

Hwang, J.-H., et al. (2022). Energy Harvesting on Playground Slide with Implementation of Lead Zirconate Titrate (PZT) Cantilever and Gear System. IEEE Conference Publication. DOI: 10.1109/ICPEA55318.2022.9731958(O‘yin maydonchasi slaydida piezoelektr energiya yig‘ish).

Playnetic BV. (2024). Interactive Human Powered Playground Equipment. Official website: https://playnetic.nl/ (Niderlandiyadagi kinetik energiya asosidagi interaktiv o‘yin uskunalari loyihalari).

Covaci, C., & Gontean, A. (2020). Piezoelectric Energy Harvesting Solutions: A Review. Sensors, 20(12), 3512. DOI: 10.3390/s20123512 (Piezoelektr energiya yig‘ish texnologiyalari umumiy obzor).

Playground Energy Ltd. (2018). Kinetic energy harvesting playground equipment. Sofia, Bulgaria. Retrieved from https://playgroundenergy.com/ (Bolgariyadagi kinetik generatorli o‘yin maydonchalari loyihalari).

Panwar, N. L., Kaushik, S. C., & Kothari, S. (2011). Role of renewable energy sources in environmental protection: A review. Renewable and Sustainable Energy Reviews, 15(3), 1513–1524. DOI: 10.1016/j.rser.2010.11.037 (Barqaror energiya va ekologik dizayn).

Isarakorn, D., et al. (2019). Design and evaluation of double-stage energy harvesting floor tile. Sustainability, 11(20), 5582. DOI: 10.3390/su11205582 (Piezoelektr pol plitalari energiya hisob-kitoblari).

Priya, S., & Inman, D. J. (Eds.). (2009). Energy Harvesting Technologies. Springer. ISBN: 978-0387764634 (Kinetik energiya yig‘ish tamoyillari kitobi).

Viet, N. V., Wu, N., & Wang, Q. (2017). A review on energy harvesting from ocean waves by piezoelectric technology. Journal of Modeling in Mechanics and Materials, 1(20160161). (Piezoelektr texnologiyalar, shu jumladan kinetik harakatdan).

Yang, J.-T., Chen, C.-I., & Zheng, M.-C. (2023). Elevating Children’s Play Experience: A Design Intervention. Sustainability, 15(8), 6971. DOI: 10.3390/su15086971 (Bolalar o‘yin maydonchalari dizayni va barqarorlik).

Downloads

Published

2025-12-01