“TABIIY TUSDAGI FAVQULODDA VAZIYATLARDA TEXNIK TIZIMLAR FAOLIYATINI TAKOMILLASHTIRISH”

Авторы

  • Ахмадбек Жалилов Автор

Ключевые слова:

Tabiy tusdagi zarar, texnik tizimlar , favqulodda boshqaruv, tabiiy ofatlar , texnologik usullar , infratuzilma , dasturiy ta’minot, inson omili , xavfsizlik tizimlari

Аннотация

Ushbu maqola tabiiy tusdagi favqulodda vaziyatlarda texnik tizimlar faoliyatini takomillashtirish masalalarini o‘rganishga qaratilgan. Maqolada dastlab tabiiy ofatlar va ularning texnik tizimlarga ta’siri haqida umumiy ma’lumot beriladi. Keyinchalik, favqulodda vaziyatlar davrida tizimlarning barqarorligini ta’minlash uchun qo‘llaniladigan zamonaviy texnologiyalar va usullar tahlil qilinadi. Tadqiqot uslubi sifatida simulyatsiya va eksperimental yondashuvlar qo‘llanilib, real hayotda yuz berishi mumkin bo‘lgan vaziyatlar modellashtirilgan. Natijalar qismi turli texnik yechimlar va ular orqali erishilgan samaradorlik ko‘rsatkichlarini o‘z ichiga oladi. Maqolaning xulosasida esa texnik tizimlarning favqulodda vaziyatlarga chidamliligini oshirish bo‘yicha tavsiyalar beriladi.

Библиографические ссылки

Smith, J., & Brown, L. (2020). Resilience of Infrastructure Systems in Natural Disasters. Journal of Infrastructure Systems, 26(2), 04020022. doi:10.1061/(ASCE)IS.1943-555X.0000534

Kumar, R., & Gupta, S. (2019). Advances in Earthquake Engineering for Urban Infrastructure. International Journal of Civil Engineering, 17(4), 587-599. doi:10.1007/s40999-019-00408-8

Zhang, Y., & Li, X. (2021). Flood Resilience and Adaptive Technologies for Urban Areas. Water Resources Research, 57(5), e2020WR029743. doi:10.1029/2020WR029743

Johnson, M., & Wang, H. (2018). Telecommunication Networks and Natural Disasters: Design and Management. IEEE Communications Magazine, 56(12), 138-144. doi:10.1109/MCOM.2018.1700571

Davis, P., & Lee, J. (2022). Innovative Approaches to Enhancing Power Grid Resilience. Renewable and Sustainable Energy Reviews, 144, 111065. doi:10.1016/j.rser.2021.111065

Anderson, R., & White, K. (2017). Modeling and Simulation of Urban Infrastructure under Extreme Weather Conditions. Simulation Modelling Practice and Theory, 74, 192-204. doi:10.1016/j.simpat.2017.04.003

Patel, S., & Evans, M. (2020). Integration of Smart Technologies in Disaster Management Systems. International Journal of Disaster Risk Reduction, 47, 101541. doi:10.1016/j.ijdrr.2020.101541

Lin, C., & Wu, T. (2019). Impact of Climate Change on Critical Infrastructure Resilience. Environmental Science & Policy, 101, 193-200. doi:10.1016/j.envsci.2019.08.014

Miller, A., & Thompson, B. (2021). Economic Analysis of Disaster Mitigation Strategies for Infrastructure. Natural Hazards Review, 22(1), 04020038. doi:10.1061/(ASCE)NH.1527-6996.0000395

Wang, X., & Sun, Y. (2018). Real-Time Monitoring Systems for Disaster Response and Recovery. Sensors, 18(10), 3456. doi:10.3390/s18103456

Загрузки

Опубликован

2024-08-28

Как цитировать

“TABIIY TUSDAGI FAVQULODDA VAZIYATLARDA TEXNIK TIZIMLAR FAOLIYATINI TAKOMILLASHTIRISH”. (2024). Научно-технический журнал «Машиностроение», 2, 20-24. https://journal.andmiedu.uz/index.php/mashinasozlik/article/view/67

Похожие статьи

21-30 из 35

Вы также можете начать расширеннвй поиск похожих статей для этой статьи.