Zamonaviy fan: innovatsion yondashuvlar va yosh tadqiqotchilarning dolzarb izlanishlari

Namangan davlat pedagogika instituti hamda G.V. Plexanov nomidagi Rossiya iqtisodiyot universitetining Toshkent shahri filiali hamkorligida joriy yilning 10-avgust kuni "Zamonaviy fan: innovatsion yondashuvlar va yosh tadqiqotchilarning dolzarb izlanishlari" mavzusidagi II an’anaviy Respublika miqyosidagi konferensiya o‘tkazilishi rejalashtirilgan.

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English

THEORETICAL MODELING OF THE EFFECT OF TEMPERATURE GRADIENT ON HEAT TRANSFER RATE DURING HYDROGEN ADSORPTION IN CARBON NANOTUBES

Published
25.08.2026
Journal
Zamonaviy fan: innovatsion yondashuvlar va yosh tadqiqotchilarning dolzarb izlanishlari
Issue
Zamonaviy fan: innovatsion yondashuvlar va yosh tadqiqotchilarning dolzarb izlanishlari
Pages
246-248
DOI
10.5281/zenodo.21912322

Authors

Abstract

This article presents a theoretical model of the effect of temperature gradients on the heat transfer rate during hydrogen adsorption in carbon nanotubes. The relationship between temperature distribution, adsorption processes, and heat transfer characteristics is analyzed. The results provide a theoretical basis for improving the thermal efficiency and hydrogen storage performance of carbon nanotube-based systems

Keywords

carbon nanotubes heat transfer hydrogen adsorption hydrogen storage temperature gradient theoretical modeling thermal efficiency

Other language versions

Oʻzbekcha
Ushbu maqolada uglerod nanotubalarida vodorod adsorbsiyasi jarayonida harorat gradientining issiqlik uzatish tezligiga ta’sirini ifodalovchi nazariy model ishlab chiqilgan. Harorat taqsimoti, adsorbsiya jarayoni va issiqlik uzatish xususiyatlari o‘rtasidagi bog‘liqlik tahlil qilingan. Olingan natijalar uglerod nanotubalari asosidagi tizimlarning issiqlik samaradorligi va vodorodni saqlash ko‘rsatkichlarini yaxshilash uchun nazariy asos yaratadi
harorat gradienti issiqlik samaradorligi issiqlik uzatish nazariy modellashtirish uglerod nanotubalari vodorod adsorbsiyasi vodorodni saqlash
Русский
В статье представлена теоретическая модель влияния градиента температуры на скорость теплопередачи при адсорбции водорода в углеродных нанотрубках. Проанализирована взаимосвязь между распределением температуры, процессами адсорбции и характеристиками теплопередачи. Полученные результаты создают теоретическую основу для повышения тепловой эффективности и характеристик хранения водорода в системах на основе углеродных нанотрубок
адсорбция водорода градиент температуры теоретическое моделирование тепловая эффективность теплопередача углеродные нанотрубки хранение водорода

References

• Fatemeh Bahmanzadgan, A. Ghaemi, Mohammad Qasemnazhand, Milad Molaee (2025). Simulation of gas adsorption on single-walled carbon nanotubes. https://doi.org/10.1038/s41598-025-99988-5
• S. Musso, S. Porro, Mauro Giorcelli (2023). GROWTH AND CHARACTERIZATION OF CARBON NANOTUBES AS HYDROGEN STORAGE SYSTEM. https://doi.org/10.1615/HYSYDAYS2005.330
• B. A. Abdulkadir, H. D. Setiabudi (2024). Recent Advances in Multi‐Walled Carbon Nanotubes for High‐Efficient Solid‐State Hydrogen Storage: A Review. https://doi.org/10.1002/ceat.202400067
Image References
• Comparison of Traditional and ML-Assisted Catalysis Paradigms [Image]. (2026). Retrieved from https://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fs42004-026-01967-y/MediaObjects/42004_2026_1967_Fig1_HTML.png
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