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Plant Hazard Analysis and Safety Instrumentation Systems

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Plant Hazard Analysis and Safety Instrumentation Systems is the first book to combine coverage of these two integral aspects of running a chemical processing plant. It helps engineers from various disciplines learn how various analysis techniques, international standards, and instrumentation and controls provide layers of protection for basic process control systems, and how, as a result, overall system reliability, availability, dependability, and maintainability can be increased. This step-by-step guide takes readers through the development of safety instrumented systems, also including discussions on cost impact, basics of statistics, and reliability. Swapan Basu brings more than 35 years of industrial experience to this book, using practical examples to demonstrate concepts. Basu links between the SIS requirements and process hazard analysis in order to complete SIS lifecycle implementation and covers safety analysis and realization in control systems, with up-to-date descriptions of modern concepts, such as SIL, SIS, and Fault Tolerance to name a few. In addition, the book addresses security issues that are particularly important for the programmable systems in modern plants, and discusses, at length, hazardous atmospheres and their impact on electrical enclosures and the use of IS circuits.

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Detaljer
  • SprogEngelsk
  • Sidetal1062
  • Udgivelsesdato08-11-2016
  • ISBN139780128037638
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt1590 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Decision making Reliability Risk management Fault tolerance Task analysis Probability recipe Petri net DMZ Effects Firewall Availability Hazard Identification Defense in Depth Fail-safe Control Measures Scenario Development Fuzzy Approach Digraph Hazard Dynamic Recovery Direct reduction iron Smart Diagnostics Criticality Analysis Man in the middle Advanced boiling water reactor (ABWR)Burner management system (BMS)Cooker and diagnostic analysis (FMEDA)Proof test Alarm life cycle and rationalization As low as reasonably practicable (ALARP)Basic process control systems (BPCS)Consequence Automated FMEA Automated HAZOP and maintainability (RAM)Risk graph ANTHENA and SIL Black channel communication CHAZOP guidewords Continuous and batch HAZOP process Batch automation Bath tub curve Common cause failure (CCF)Failure modes Control measure Detector placement Byzantine failure Calibrated risk graph Common protocol Emergency shutdown (ESD)Fault tree analysis (FTA)Fire and gas system (FGS) model Fieldbus nonincendive concept (FNICO)Ignition curve Fire and explosion index Fault tolerant unit Facility-related issues Full variability language Grandfather clause Hierarchical Task Analysis Human error probability (HEP)Human failure event (HFE)Impact event Independent protection layer Layer of protection analysis (LOPA)Risk matrix & Limited variability language Ingress protection Major accident event (MEA)Major hazard facility Fault tolerant network Factory acceptance test (FAT)Fieldbus intrinsic safety concept (FISCO)Flash point Fixed program language Lower explosive limit (LEL) and upper explosive limit (UEL)Proof test Hazard log Plant hazard analysis (PHA)Quantitative risk analysis Graceful shutdown Programmable electronics Partial stroke test (PST)Safe fieldbus Preliminary hazard list Risk priority number (RPN)Software FMEA (SWFMEA)Risk ranking Qualitative hazard analysis Safety life cycle Hazard inventory Process shutdown (PSD)Pyrolysis Short-term exposure limit (STEL)Target risk Structured query language (SQL)System theoretic process analysis (STPA)Wobbe meter Olefins aromatic Safety instrumented function (SIF)Safety integrity level (SIL)Safety integrity Proof Test Risk Matrix Plant ageing Safe PLC Safe programmable logic controllers Safety management system (SMS)Substance hazard index SIL certificate Security level Smart positioner Zone conduit
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