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Accidents in technical installations are random events. Hence they cannot be totally avoided. Only the probability of their occurrence may be reduced and their consequences be mitigated. … Plus…

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Accidents in technical installations are random events. Hence they cannot be totally avoided. Only the probability of their occurrence may be reduced and their consequences be mitigated. … Plus…

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Informations détaillées sur le livre - Process and Plant Safety


EAN (ISBN-13): 9783642409547
Date de parution: 2015
Editeur: Springer Berlin

Livre dans la base de données depuis 2014-11-21T19:46:04+01:00 (Zurich)
Page de détail modifiée en dernier sur 2024-01-31T15:30:49+01:00 (Zurich)
ISBN/EAN: 9783642409547

ISBN - Autres types d'écriture:
978-3-642-40954-7
Autres types d'écriture et termes associés:
Auteur du livre: hauptmann, hau, haupt, werner müller
Titre du livre: safety


Données de l'éditeur

Auteur: Ulrich Hauptmanns
Titre: Process and Plant Safety
Editeur: Springer Vieweg; Springer Berlin
665 Pages
Date de parution: 2014-08-13
Berlin; Heidelberg; DE
Langue: Anglais
139,09 € (DE)
143,00 € (AT)
154,50 CHF (CH)
Available
XV, 665 p. 207 illus.

EA; E107; eBook; Nonbooks, PBS / Physik, Astronomie; Sicherheitssysteme und Brandmeldeanlagen; Verstehen; End-of-the-pipe Safety Measures; Functional Safety; Hazardous Materials; Hazardous Process Conditions; Process Plant Control; Qualitative and Quantitative Safety and Risk Assessment; Simulation of Process Plants; quality control, reliability, safety and risk; industrial pollution prevention; B; Security Science and Technology; Chemical Safety; Pollution; Engineering; Industrielle Chemie und Chemietechnologie; Umweltverschmutzung und Gefahren für die Umwelt; BB

Accidents in technical installations are random events. Hence they cannot be totally avoided. Only the probability of their occurrence may be reduced and their consequences be mitigated. The book proceeds from hazards caused by materials and process conditions to indicating technical and organizational measures for achieving the objectives of reduction and mitigation. Qualitative methods for identifying weaknesses of design and increasing safety as well as models for assessing accident consequences are presented. The quantitative assessment of the effectiveness of safety measures is explained. The treatment of uncertainties plays a role there. They stem from the random character of the accident and from lacks of knowledge on some of the phenomena to be addressed. The reader is acquainted with the simulation of accidents, safety and risk analyses and learns how to judge the potential and limitations of mathematical modelling. Risk analysis is applied amongst others to “functional safety” and the determination of “appropriate distances” between industry and residential areas (land-use planning). This shows how it can be used as a basis for safety-relevant decisions. Numerous worked-out examples and case studies addressing real plants and situations deepen the understanding of the subjects treated and support self-study.

Chemical and petrochemical industry, licensing authorities, testing and certification bodies, safety engineers, engineering , students of process,  chemical and mechanical engineering as well as of industrial and engineering chemistry.

Target groups

Hazardous materials and operating conditions.- Exothermic and pressure generating reactions-safe design and operation of plants.-Simulation of accidents.- Personal safety and personal protective equipment.- Protection of plants based on control.- Protection of equipment (end-of-the-pipe technology).- Plant systems analysis.-  Modelling of accident consequences, risk analysis and valuation.- Functional safety.- Determination of appropriate distances.

Accidents in technical installations are random events. Hence they cannot be totally avoided. Only the probability of their occurrence may be reduced and their consequences be mitigated. The book proceeds from hazards caused by materials and process conditions to indicating technical and organizational measures for achieving the objectives of reduction and mitigation. Qualitative methods for identifying weaknesses of design and increasing safety as well as models for assessing accident consequences are presented. The quantitative assessment of the effectiveness of safety measures is explained. The treatment of uncertainties plays a role there. They stem from the random character of the accident and from lacks of knowledge on some of the phenomena to be addressed. The reader is acquainted with the simulation of accidents, safety and risk analyses and learns how to judge the potential and limitations of mathematical modelling. Risk analysis is applied amongst others to “functional safety” and the determination of “appropriate distances” between industry and residential areas (land-use planning). This shows how it can be used as a basis for safety-relevant decisions. Numerous worked-out examples and case studies addressing real plants and situations deepen the understanding of the subjects treated and support self-study.


The book provides case studies, contains problems and solutions It helps to get a profound understanding of safety methods The author is an experienced expert in the field Includes supplementary material: sn.pub/extras

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