1.

Record Nr.

UNINA9910256159403321

Titolo

Agricoltura di precisione : metodi e tecnologie per migliorare l'efficienza e la sostenibilità dei sistemi colturali / a cura di Raffaele Casa

Pubbl/distr/stampa

Milano : Edagricole, 2016

ISBN

978-88-506-5510-6

Descrizione fisica

XVIII, 407 p. : ill. ; 26 cm

Collana

Edagricole università & formazione

Disciplina

338.16

Locazione

FAGBC

Collocazione

60 631.3 CASR 2016

60 631.3 CASR 2016 BIS

60 631.3 CASR 2016 TER

Lingua di pubblicazione

Italiano

Formato

Materiale a stampa

Livello bibliografico

Monografia



2.

Record Nr.

UNINA9910690392203321

Titolo

Defense acquisition : acquisition plans for training aircraft should be reevaluated : report to the Secretary of Defense

Pubbl/distr/stampa

Washington, D.C. (P.O. Box 37050, Washington, D.C. 20013

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

3.

Record Nr.

UNINA9910830809603321

Titolo

Process safety in upstream oil and gas / / American Institute of Chemical Engineers

Pubbl/distr/stampa

Hoboken, New Jersey : , : John Wiley & Sons, Incorporated, , [2021]

©2021

ISBN

1-119-62014-7

1-5231-3827-0

1-119-62006-6

1-119-62005-8

Descrizione fisica

1 online resource (191 pages) : illustrations

Disciplina

622.8

Soggetti

Gas wells - Safety measures

Oil fields - Safety measures

Petroleum industry and trade - Safety measures

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di bibliografia

Includes bibliographical references and index.

Nota di contenuto

Cover -- Title Page -- Copyright -- Contents -- List of Tables -- List of Figures -- Acronyms and Abbreviations -- Glossary -- Acknowledgments -- Online Materials Accompanying this Book -- Preface -- 1 An Introduction to Process Safety for Upstream -- 1.1 Background -- 1.2 Applicability of Process Safety to Upstream -- 1.3



Intended Audience -- 1.4 Why the Reader Should be Interested -- 1.5 Scope of This Book -- 1.6 Upstream Safety Performance -- 1.6.1 Analysis of US Offshore Safety Data -- 1.6.2 International Incident Data from IOGP -- 1.6.3 Marsh 100 Largest Losses -- 1.7 Summary -- 2 The Upstream Industry -- 2.1 Upstream Industry -- 2.1.1 Life Cycle Stages -- 2.1.2 Types of Upstream Facilities -- 2.2 Exploration Phase -- 2.2.1 Onshore -- 2.2.2 Offshore -- 2.2.3 Completion -- 2.3 Engineering Design, Construction and Installation -- 2.3.1 Engineering Design -- 2.3.2 Construction and Installation of Production Facilities -- 2.4 Production Phase -- 2.5 Well Workovers and Interventions -- 2.6 Decommissioning Phase -- 2.7 Defining "Barriers" -- 2.8 Overview of International Regulations -- 3 Overview of Risk Based Process Safety (RBPS) -- 3.1 Background -- 3.2 RBPS Summary -- 3.2.1 Pillar: Commit to Process Safety -- 3.2.2 Pillar: Understand Hazards and Risk -- 3.2.3 Pillar: Manage Risk -- 3.2.4 Pillar: Learn from Experience -- 3.3 Conclusion -- 4 Application of Process Safety to Wells -- 4.1 Background -- 4.1.1 Drilling the Well: The Well Bore -- 4.1.2 Drilling the Well: Barriers -- 4.1.3 Drilling the Well: Fluid Column -- 4.1.4 Drilling the Well: Casing -- 4.1.5 Drilling the Well: Cement -- 4.1.6 Drilling the Well: The BOP -- 4.1.7 Well Completions -- 4.1.8 Well Workovers or Interventions -- 4.1.9 Depleted Wells -- 4.2 Well Constuction: Risks and Key Process Safety Measures -- 4.2.1 Overview -- 4.2.2 The Well -- 4.2.3 Shallow Gas.

4.2.4 High Pressure High Temperature (HPHT) Wells -- 4.2.5 Adjacent Wells -- 4.2.6 Completions -- 4.2.7 Workovers or Interventions -- 4.2.8 Depleted Wells -- 4.2.9 Mud Room / Shale Shakers, Well Fluid Handling and Treatment Locations -- 4.2.10 Surface Process Equipment at Well Construction Facilities -- 4.2.11 Harsh Weather -- 4.2.12 SIMOPS -- 4.3 Applying Process Safety Methods in Well Construction -- 4.3.1 Regulations and Standards -- 4.3.2 Hazard Identification and Risk Analysis -- 4.3.3 Asset Integrity and Reliability -- 4.3.4 Training and Performance Assurance -- 4.3.5 Emergency Management -- 4.3.6 Learn from Experience -- 4.3.7 Management System Audits and Safety Culture Surveys -- 5 Application of Process Safety to Onshore Production -- 5.1 Background -- 5.2 Onshore Production Facilities: Risks and Key Process Safety Measures -- 5.2.1 Leak from Production Facilities -- 5.2.2 Gathering Pipeline Leaks -- 5.2.3 Storage Tanks and Vessels -- 5.2.4 Loss of Well Control -- 5.2.5 SIMOPS -- 5.2.6 Vents and Flare -- 5.3 Applying Process Safety Methods in Onshore Production -- 5.3.1 Regulations and Standards -- 5.3.2 Hazard identification and Risk Analysis -- 5.3.3 Learning from Experience -- 5.3.4 Emergency Management -- 6 Application of Process Safety to Offshore Production -- 6.1 Background -- 6.2 Offshore Production Facilities: Risks and Key Process Safety Measures -- 6.2.1 The Well -- 6.2.2 The Production and Export Risers -- 6.2.3 Topside Production Equipment -- 6.2.4 Oil Storage Tanks -- 6.2.5 Other Offshore Risks -- 6.3 Applying Process Safety Methods in Offshore Production -- 6.3.1 Process Safety Culture -- 6.3.2 Regulations and Standards -- 6.3.3 Hazard Identification and Risk Analysis -- 6.3.4 Asset Integrity and Reliability -- 6.3.5 Emergency Management -- 7 Application of Process Safety to Engineering Design, Construction and Installation.

7.1 Background -- 7.1.1 RBPS and Project Engineering -- 7.1.2 Project Life Cycle Terminology -- 7.2 Front End Loading -- 7.2.1 FEL-1 -- 7.2.2 FEL-2 -- 7.2.3 FEL-3 -- 7.3 Detailed Design -- 7.4 Procurement and Construction -- 7.4.1 Procurement and Quality Plan -- 7.4.2 Construction -- 7.4.3 Operational Readiness -- 7.5 Commissioning and Startup of Facilities -- 8 Process Safety: Looking Forward -- 8.1



Looking Forward -- 8.2 Research Needs -- 8.2.1 Regulatory Bodies -- 8.2.2 Research Organizations -- 8.3 Technical Advances -- 8.3.1 Process Safety -- 8.3.2 World Energy Source Transition -- 8.4 Vision for Upstream Process Safety -- References -- Index -- EULA.

Sommario/riassunto

"Process safety has been in use in downstream portions of the oil, gas, and chemicals industries for decades both in the U.S. and internationally. Its use in upstream, especially in the U.S., has started much more recently prompted by incidents and regulatory changes"--