Published February 11, 2026 | Version v1
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AVTONOM ELEKTR TA'MINOTIGA INTEGRATSIYALASHGAN ELEKTRLI ISSIQ POL TIZIMLARINING ENERGIYA SAMARADORLIGINI OSHIRISH IMKONIYATLARINI TADQIQ ETISH

  • 1. Tayanch doktorant, "Energetika muhandisligi" kafedrasi, Qarshi davlat texnika universiteti
  • 2. Professor, "Energetika muhandisligi" kafedrasi, Qarshi davlat texnika universiteti
  • 3. Texnika fanlari doktori (DSc), "Energetika muhandisligi" kafedrasi, Qarshi davlat texnika universiteti
  • 4. Worldly Knowledge Publishing Centre

Description

Maqolada turar-joy binolarida energiya samarador isitish tizimlarini takomillashtirish masalalari, xususan avtonom elektr ta’minoti bilan integratsiyalashgan elektrli issiq pol tizimlarining texnik va energetik samaradorligi tahlil qilinadi. Iqlim o‘zgarishi, energiya resurslarining qimmatlashuvi hamda markazlashgan energiya tizimlariga yuklamaning ortishi sharoitida past haroratli, avtomatlashtirilgan va ekologik toza isitish texnologiyalarini joriy etish zarurati asoslanadi. Xorijiy ilmiy tadqiqotlar asosida pol osti isitish tizimlarining radiatorli va havoli isitish tizimlariga nisbatan energiya sarfi va issiqlik yo‘qotishlari bo‘yicha ustunliklari ko‘rsatib berilgan. Elektr issiq pol tizimlarining fotoelektrik panellar, issiqlik akkumulyatsiyasi va faza-almashuvchi materiallar bilan integratsiyasi energiya iste’molini kamaytirish va issiqlik shinamligini oshirishning samarali usuli ekanligi ilmiy jihatdan tahlil qilingan. Olingan natijalar avtonom elektrli isitish tizimlarini real iqlim sharoitlarida qo‘llashning yuqori istiqbolliligini tasdiqlaydi.

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References

  • M. Mikk, A. Ferrantelli, J. Kurnitski. Experimental determination of radiator, underfloor and air heating emission losses due to stratification and operative temperature variations. Energy and Buildings, 166, 2018. – p. 220-228.
  • A.F. Silvestre. Analysis and simulation of underfloor heating system for bathrooms in Swedish buildings. Student thesis, Advanced level (Master degree, one year), 15 HE Energy Systems Master Programme in Energy Systems. 2023.
  • L. Maciej, P. Oclon. Model Predictive Control and energy optimisation in residential building with electric underfloor heating system. Energy, 182, 2019. – p. 1028-1044.
  • Rantala, V. Leivo. Heat loss into ground from a slab‐on‐ground structure in a floor heating system. International journal of energy research, vol. 30, no 12, 2006. – p. 929-938.
  • H. Charvatova, A. Prochazka, M. Zalesak, V. Marik. Numerical Assessment of Electric Underfloor Heating Enhanced by Photovoltaic Integration. Sensors, 25, 2025:5916. https://doi.org/10.3390/s25185916.