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Potresni odziv jeklenih rezervoarjev s plavajočimi strehami : doktorska disertacija
ID Caprinozzi, Stefano (Author), ID Dolšek, Matjaž (Mentor) More about this mentor... This link opens in a new window, ID Paolacci, Fabrizio (Comentor)

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Abstract
Nedavni močni potresi so razkrili, da jekleni rezervoarji za tekočino niso imuni na naravno-tehnološke nezgode. Glaven problem predstavlja potencialno uhajanje nevarnih snovi iz rezervoarjev, kar je bil predmet raziskav, predstavljenih v doktorski disertaciji. Najprej je preučevana zmogljivost poenostavljenega modela dvignjenega rezervoarja, ki ni skladen s standardom in se je porušili med potresom v Kocaeliju. Na primeru tega rezervoarja in različice, ki je skladna s trenutno veljavnim standardom, so nato preverjene tri mere potresne zmogljivosti. Potresno tveganje se izkaže za bolj celovito mero potresne zmogljivosti, vendar je računsko zahtevna mera, medtem ko je konvencionalna mera potresne zmogljivosti dobro uveljavljena, vendar lahko vodi do pristranskega odločanja. Ta ugotovitev je narekovala razvoj računsko učinkovitega poenostavljenega modela prostostoječega rezervoarja s plavajočo streho, ki je bil preverjen s poudarkom na simulaciji prelivanja tekočine preko stene rezervoarja. Za preverjanje poenostavljenega modela so uporabljeni eksperimentalni rezultati na potresni mizi in rezultati simulacij na osnovi podrobnega modela s končnimi elementi. Zmogljivost poenostavljenega modela za analize tveganja se nato demonstrira s potresno analizo ranljivost in tveganja prostostoječega širokega rezervoarja s plavajočo streho. Ugotovljeno je bilo, da je tveganje za prelivanje tekočine visoko, medtem ko je bilo tveganje za izlitje tekočine zaradi okvare stene rezervoarja približno en velikostni red nižje. Uvedena metodologija za oceno potresnega tveganja upošteva letno spremembo stopnje polnjenja rezervoarja in je tudi učinkovito orodje za obvladovanje tveganja za izgube zadrževanja tekočine, če se uporabi za določitev sprejemljive stopnje napolnjenosti rezervoarjev ob upoštevanju ciljnega tveganja.

Language:Slovenian
Keywords:jekleni rezervoarji, petrokemična tovarna, analiza potresne ranljivosti, analiza tveganja, odločitveni model, naravno-tehnološki dogodki, plavajoča streha, potresna miza, poenostavljen model, model s končnimi elementi
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FGG - Faculty of Civil and Geodetic Engineering
Place of publishing:Ljubljana
Publisher:[S. Caprinozzi]
Year:2021
PID:20.500.12556/RUL-128475 This link opens in a new window
UDC:624.014.2:624.953:624.042.7(043)
COBISS.SI-ID:71091203 This link opens in a new window
Publication date in RUL:15.07.2021
Views:1385
Downloads:138
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Secondary language

Language:English
Title:Seismic response of steel tanks with floating roofs : doctoral dissertation
Abstract:
Recent major earthquakes revealed that liquid steel storage tanks are not immune to Natech accidents. The main issue is the potential leakage of hazardous material from the storage tank, which was also the subject of research presented in the thesis. Firstly, the capability of the tank simplified model is investigated by means of a non-code-conforming elevated tank that collapsed during the Kocaeli earthquake. Then three available seismic performance metrics are applied to the non-code-conforming elevated tank and its code-conforming variant. The risk-based performance metric is found comprehensive but computationally demanding, while the conventional performance metric is well established, but it may lead to biased decision-making. This finding implied the development of a computationally efficient simplified model of the unanchored liquid storage tank with a floating roof. The developed simplified model is validated by focusing on simulating liquid overtopping observed from the shaking table test results and refined finite element model. The capability of the simplified model is then demonstrated by means of the seismic fragility and risk analysis of the unanchored broad storage tank with a floating roof. The risk for liquid overtopping is observed high, while the risk for leakage due to tank wall failure is about one magnitude lower. The introduced methodology for seismic risk assessment also accounts for the annual variation of the tank's filling level. It is an efficient tool for loss-of-containment risk management if applied for determination of the risk-based tolerable tank's filling level of the storage tanks.

Keywords:Steel storage tanks, Petrochemical plant, Seismic fragility analysis, Risk analysis, Decision models, Natech event, Floating roof, Shaking table test, Simplified model, Finite element model

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