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Thursday, May 14, 2020 | History

2 edition of assessment of steam-explosion-induced containment failure found in the catalog.

assessment of steam-explosion-induced containment failure

assessment of steam-explosion-induced containment failure

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Published by Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission in Washington, DC .
Written in English

    Subjects:
  • Nuclear reactor accidents -- Containment.,
  • Nuclear reactors -- Containment -- Explosions.,
  • Nuclear power plants -- Risk assessment.

  • Edition Notes

    Other titlesAssessment of steam explosion induced containment failure.
    Statementprepared by T.G. Theofanous ... [et al.].
    ContributionsTheofanous, T. G., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., University of California, Santa Barbara. Dept. of Chemical and Nuclear Engineering.
    The Physical Object
    Pagination1 v. (various pagings) :
    ID Numbers
    Open LibraryOL18064351M

    A M.D.B StephensE 1F G MECHANICSH I USCM NrEffects of microscopic inhomogeneities on the failure and fracture behavior of disordered and reinforced materialsO J.D.P Goddard R.M.S. Thesis, University of Southern CaliforniaS U PublishedV ThesisW NX NY N[ Stephens, M.D.\ Goddard, J.D.


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Assessment of steam-explosion-induced containment failure Download PDF EPUB FB2

Get this from a library. An assessment of steam-explosion-induced containment failure. [T G Theofanous; U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research.; University of California, Santa Barbara. Department of Chemical and Nuclear Engineering.;].

Technical Report: An assessment of steam-explosion-induced containment failure Title: An assessment of steam-explosion-induced containment failure Full Record. A variety of probabilistic models to quantify the likelihood of steam-explosion-induced alphamode) containment failure from core melt accidents in commercial light water reactors have been proposed in the past.

In many respects, these models and associated mechanistic considerations were. Buy An assessment of steam-explosion-induced containment failure (SuDoc Y 3.N /) by (ISBN:) from Amazon's Book Store.

Everyday low prices and free delivery on eligible cturer: Assessment of steam-explosion-induced containment failure book of Systems Research, Office of Nuclear Regulatory Research, U.S.

Nuclear Regulatory Commission. Download Citation | Assessment of Risk Studies and Severe Nuclear Accidents | In Chaps.

7 and 9 the results of the risk studies for LWRs and the facts and consequences of the severe nuclear. Comments on “An Assessment of Steam-Explosion-Induced Containment Failure. Parts I-IV” October Nuclear science and engineering: the journal of the American Nuclear Society.

Nuclear Engineering and Design () 23 North-Holland Premixing of steam explosions: a three-fluid model W.H.

Amarasooriya and T.G. Theofanous University of California, Santa Barbara, Department of Chemical and Nuclear Engineering, Santa Barbara, CAUSA Received May A transient, two-dimensional, three-fluid model is proposed to address the problem of premixing of Cited by: Theofanous B et al () An assessment of steam explosion-induced containment failure, Part I: Probabilistic effects.

Nucl Sci Eng – Google Scholar Author: Günter Kessler, Anke Veser. Introduction. A steam explosion is a type of a fuel-coolant interaction (FCI), which results from the rapid and intense heat transfer that may follow the interaction between the molten material and the coolant (Berthoud, ; Corradini et al., ; Sehgal et al., ; Turland and Dobson, ).Such an interaction can occur when the melt is poured into the coolant, when the coolant is Cited by: 1.

Available in the National Library of Australia collection. Author: Theofanous, T. G; Format: Book, Microform; ix, 17, 39 p.: ill. ; 28 cm. Performance of nuclear power-plant protective barriers under internal explosion and external impact M. Corrodini, D. Swenson, D.

Woodfin, and L. Voolker, "Analysis of containment failure by a steam explosion following a postulated core and E. Rumdle, "An assessment of steam-explosion-induced containment failure, Nucl.

Sci. Eng., 97, No Cited by: 2. ELSEVIER Nuctear En~neefing and Design () Premixing-related behavior of steam explosions S. AngelinP'b, W.W.

Yuena.b, T.G. Theofanousa ~Center for Risk Studies and Safety, Department of Chemical and Nuclear Engineering, University of California, Sm~ta Barbara, CAUSA bDepartment of Mechanical and Environmental by: Available in the National Library of Australia collection.

Format: Picture, Online; 1 of photographs: gelatin silver ; 16 x 21 cm. or smaller. The Nuclear Energy Agency (NEA) is a specialised agency within the Organisation for Economic Co-operation and Development (OECD), an intergovernmental organisation of industrialised countries, based in Paris, France.

The mission of the NEA is to assist its Member countries in maintaining and further developing, through international co-operation, the scientific, technological and legal bases.

regarding future steps in this area. Resolved the apha-mode failure from the risk perspective, the most important steam explosion remaining safety issues are failure of the lower head and damage to the cavity, with potential consequences for containment integrity.

The. International Agreement Report Kalinin VVER Nuclear Power Station Unit 1 PRA (Beta Project). The Nuclear Energy Agency (NEA) is a semi-autonomous body within the Organisation for Economic Co-operation and Development (OECD), located in the Paris area in France.

The objective of the Agency. An assessment of steam-explosion-induced containment failure – Description/Abstract, A variety of probabilistic models to quantify the likelihood of steam explosion induced containment failure from core melt accidents in commercial light water reactors have been proposed in the past.

Cited by Enhancement of enzymatic saccharification of Eucalyptus globulus: steam explosion versus steam treatment. PubMed. Martin-Sampedro, Raquel; Revilla, Esteban; Villar, Juan C; Eugeni. Physical structure changes of solid medium by steam explosion sterilization.

PubMed. Zhao, Zhi-Min; Wang, Lan; Chen, Hong-Zhang. Physical structure changes of solid me. A number of mathematical and statistical techniques as well as specific data relevant to the risk and safety analysis of nuclear systems are provided as appendices.

References [Hol79a] J. P. Holdren, K. Anderson, P. H. Gleick, I. Mintzer, and G. Morris, "Risk of Renewable Energy Sources: A Critique of the Inhaber Report," ERGEnergy and.In the past, the issue of in-vessel steam explosions causing the upper head failure of the reactor vessel was mainly concerned in LWR (WASH, ).

In this so called alpha mode containment failure it is considered that the ejected upper head could endanger the containment integrity.Potential failure modes of the containment that have been identified in PSA studies can to be grouped under the following headings: Containment Bypass Interfacing-systems LOCA Failure to isolate containment Steam generator tube rupture Containment function failed before or at the onset of core degradation, e.g., failure by an external.