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[102780] Artykuł: Thermophysical-based Effect of Gas Hydrates Self-Preservation(Termofizyczny efekt samozachowawczy hydratów gazowych)Czasopismo: Rocznik Ochrona Środowiska Tom: 22, Zeszyt: 1, Strony: 11-22 ISSN: 1506-218X Opublikowano: 2020 Liczba arkuszy wydawniczych: 1.00 Autorzy / Redaktorzy / Twórcy Grupa MNiSW: Publikacja w czasopismach wymienionych w wykazie ministra MNiSzW (część A) Punkty MNiSW: 40 Pełny tekst Web of Science YADDA/CEON Słowa kluczowe: gas hydrates  self-preservation effect  experimental studies  mathematical modeling  dissociation  Keywords: gas hydrates  self-preservation effect  experimental studies  mathematical modeling  dissociation  |
To improve gas hydrates dissociation technology, studies of heat transfer processes on the interfacial surface are significant. In the work, experimental and theoretical
studies of the gas hydrates dissociation are presented.
The scientific novelty is in establishing quantitative characteristics that describe the
gas hydrates thermophysical parameters thermophysical characteristics influence on the
heat transfer processes intensity on the interphase surface under conditions of gas
Thermophysical-based Effect of Gas Hydrates Self-Preservation 23
hydrates dissociation. Based on the results of experimental studies, approximation dependences for determining the temperature in the depths of a dissociating gas hydrate
array have been obtained. Gas hydrates dissociation mathematical model is presented
To improve gas hydrates dissociation technology, studies of heat transfer processes on the interfacial surface are significant. In the work, experimental and theoretical
studies of the gas hydrates dissociation are presented.
The scientific novelty is in establishing quantitative characteristics that describe the
gas hydrates thermophysical parameters thermophysical characteristics influence on the
heat transfer processes intensity on the interphase surface under conditions of gas
Thermophysical-based Effect of Gas Hydrates Self-Preservation 23
hydrates dissociation. Based on the results of experimental studies, approximation dependences for determining the temperature in the depths of a dissociating gas hydrate
array have been obtained. Gas hydrates dissociation mathematical model is presented