An applied guide to process and plant design / (Registro nro. 1999)

Detalles MARC
000 -CABECERA
Campo de control de longitud fija 06161nam a2200301 i 4500
001 - NÚMERO DE CONTROL
Número de control 1999
003 - IDENTIFICADOR DEL NÚMERO DE CONTROL
Identificador del número de control AR-RqUTN
008 - DATOS DE LONGITUD FIJA--INFORMACIÓN GENERAL
Códigos de información de longitud fija 250328s2015 a||||r|||| 001 0 eng d
020 ## - NÚMERO INTERNACIONAL ESTÁNDAR DEL LIBRO
ISBN 9780128002421
040 ## - FUENTE DE LA CATALOGACIÓN
Centro catalogador de origen AR-RqUTN
Lengua de catalogación spa
Centro transcriptor AR-RqUTN
041 #7 - CÓDIGO DE LENGUA
Código de lengua del texto en
Fuente del código ISO 639-1
080 0# - NÚMERO DE LA CLASIFICACIÓN DECIMAL UNIVERSAL
Clasificación Decimal Universal 66.011
Edición de la CDU 2000
100 1# - ENTRADA PRINCIPAL--NOMBRE DE PERSONA
Nombre personal Moran, Seán
245 13 - MENCIÓN DE TÍTULO
Título An applied guide to process and plant design /
Mención de responsabilidad Seán Moran
260 ## - PUBLICACIÓN, DISTRIBUCIÓN, ETC.
Lugar de publicación, distribución, etc. Oxford :
Nombre del editor, distribuidor, etc. Elsevier,
Fecha de publicación, distribución, etc. 2015
300 ## - DESCRIPCIÓN FÍSICA
Extensión xii, 378 p. :
Otras características físicas il., tablas ;
Dimensiones 24 cm
336 ## - TIPO DE CONTENIDO
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337 ## - TIPO DE MEDIO
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500 ## - NOTA GENERAL
Nota general Incluye glosario
500 ## - NOTA GENERAL
Nota general Incluye índice alfabético
505 00 - NOTA DE CONTENIDO CON FORMATO
Nota de contenido con formato PART I: PRACTICAL PRINCIPLES<br/>1. PROCESS PLANT DESING<br/>What is engineering?<br/>What is design?<br/>Engineering design<br/>Project life cycle<br/>Process plant design<br/>Process plant design versus process design<br/>Academic versus professional practice<br/>State of the art and good engineering practice<br/>The use and abuse of computers<br/>2. STAGE OF PROCESS PLANT DESING<br/>General<br/>Conceptual design of chemical processes<br/>Front-End Engineering Design (FEED)/basic design<br/>Detailed desing<br/>Site redising<br/>Posthandover redesign<br/>Unstaged desig<br/>Product engineering<br/>Fast-tracking<br/>3. PROCESS PLANT DESING DELIVERABLES<br/>Overview<br/>Design basis and philosophies<br/>Specification<br/>Process flow diagram<br/>Piping and instrumentation diagram<br/>Functional design specification<br/>Plot plan/general arrangement/layout drawing<br/>Program<br/>Cost estimate<br/>Equipment list/Schedule<br/>Datasheets<br/>Safety documentation<br/>Design calculations<br/>Isometric piping drawings<br/>Simulator output<br/>4. TWENTY-FIRST CENTURY PROCESS PLANT DESIGN TOLOS<br/>General<br/>Use of computers by chemical engineers<br/>Implications of modern design tools<br/>Categories of design<br/>Tools-hardware<br/>Tools-Software<br/>Further Reading<br/>5. THE FUTURE OF PROCESS PLANT DESIGN<br/>Process porn<br/>Will first-principles design replace heuristic design in future?<br/>Will primary research become the basis of engineering design in future?<br/>Will “chemical process design” replace process plant design in future?<br/>Will network análisis from the coreo f design practice in future?<br/>Will process simulation replace the design process in future?<br/>Will process plant defign never change?<br/>PART II. PROFESSIONAL PRACTICE<br/>6. SYSTEM LEVEL DESIGN<br/>Introduction<br/>How to Put Unit Operations Together<br/>Matching Design Rigor with Stage of Design<br/>Implications for Cost<br/>Implications for Safety<br/>Implications for Robustness<br/>Rule of Thumb Design<br/>First Principles Design<br/>Design by Simulation Program<br/>Sources of Design Data<br/>7. PROFESSIONAL DESIGN METHODOLOGY<br/>Introduction<br/>Design Methodologies<br/>The "is" and "Ought" of Process Design<br/>Right versus Wrong Design<br/>Interesting versus Boring Design<br/>Continuous versus Batch Design<br/>Simple/Robust versus Complicated/Fragile Design<br/>Setting the Design Envelope<br/>Implications of New Design Tools<br/>Importance of Understanding Your Design<br/>Manager/Engineer Tensions in Design<br/>Whole-System Design Methodology<br/>Design Stages in a Nutshell<br/>Variations on a Theme<br/>8. HOW TO DO A MASS AND ENERGY BALANCE<br/>8.1 Introduction<br/>8.2 Handling Recycles<br/>8.3 How to Set it Out in Excel<br/>8.4 Using Excel for Iterative Calculations: "Goal Seek" and "Solver"<br/>9. HOW TO DO HYDRAULIC CALCULATIONS<br/>Introduction<br/>Matching Design Rigor with Stage of Design<br/>Hydraulic Networks<br/>Pump Curves<br/>PART III. LOW LEVEL DESIGN<br/>10. HOW TO DESIGN AND SELECT PLANT COMPONENTS AND MATERIALS<br/>Introduction<br/>What Process Engineers Design<br/>Matching Design Rigor with Stage of Design<br/>Materials of Construction<br/>Mechanical Equipment<br/>Electrical and Control Equipment<br/>11. HOW TO DESIGN UNIT OPERATIONS<br/>Introduction<br/>Matching Design Rigor with Stage of Design<br/>Rule of Thumb Design<br/>Approaches to Design of Unit Operations<br/>Sources of Design Data<br/>Scale-up and Scale-out<br/>Neglected Unit Operations: Separation Processes<br/>12. HOW TO COST A DESIGN<br/>Introduction<br/>Matching Design Rigor with Stage of Design<br/>The Basics<br/>Academic Costing Practice<br/>Professional Costing Practice<br/>PART IV. HIGH LEVEL DESIGN<br/>13. HOW TO DESIGN A PROCESS CONTROL SYSTEM<br/>Introduction<br/>Matching Design Rigor with Stage of Design<br/>Operation and Maintenance Manuals<br/>Specification of Operators<br/>Automatic Control<br/>Standard Control and Instrumentation Strategies<br/>14. HOW TO LAY OUT A PROCESS PLANT<br/>Introduction<br/>General Principles<br/>Factors Affecting Layout<br/>Plant Layout and Safety<br/>Plant Layout and Cost<br/>Plant Layout and Aesthetics<br/>Matching Design Rigor with Stage of Design<br/>15. HOW TO MAKE SURE YOUR DESIGN IS REASONABLY SAFE AND SUSTAINABLE<br/>Introduction<br/>Why Only Reasonably?<br/>Matching Design Rigor with Stage of Design<br/>Conceptual Design Stage<br/>Detailed Design Stage<br/>Formal Methods: Safety<br/>Formal Methods: Sustainability<br/>Specification of Equipment with Safety Implications in Mind<br/>Specification of Safety Devices<br/>Types of Safety Device<br/>PART V. ADVANCED DESIGN<br/>16. PROFESSIONAL PRACTICE<br/>Introduction<br/>General Design Methodology<br/>Informal Design Reviews<br/>Formal Design Reviews<br/>Quality Assurance and Document Control<br/>Informal Data Exchange<br/>17. BEGINNER'S ERRORS TO AVOID<br/>Introduction<br/>Lack of Equipment Knowledge<br/>Lack of Knowledge of Many Types of Unit Operations<br/>Lack of Knowledge of Many Materials of Construction<br/>Lack of Utilities<br/>Layout<br/>Process Control<br/>18. DESIGN OPTIMIZATION<br/>Introduction<br/>Matching Design Rigor with Stage of Design<br/>Indicators of a Need to Integrate Design<br/>How to Integrate Design<br/>When and How Not to Integrate Design<br/>Where's the Harm? The Downside of Academic "Process Integration"<br/>19. DEVELOPING YOUR OWN DESIGN STYLE<br/>Introduction<br/>The Art of Engineering<br/>The Philosophy of Engineering<br/>The Literature of Engineering<br/>The Practice of Engineering<br/>Personal Sota<br/>Appendix 1: Integrated Design Example<br/>Appendix 2: Upset Conditions Table<br/>Appendix 3: Plant Separation Tables<br/>Appendix 4: Checklists for Engineering Flow Diagrams<br/>Appendix 5: Teaching Practical Process Plant Design
650 #7 - PUNTO DE ACCESO ADICIONAL DE MATERIA--TÉRMINO DE MATERIA
Término de materia PLANTAS INDUSTRIALES (FABRICAS)
Fuente del encabezamiento o término Spines
856 41 - LOCALIZACIÓN Y ACCESO ELECTRÓNICOS
Texto del enlace Clic aquí
942 ## - ELEMENTOS DE PUNTO DE ACCESO ADICIONAL (KOHA)
Tipo de ítem Koha Libros
Esquema de clasificación Universal Decimal Classification
999 ## - NÚMEROS DE CONTROL DE SISTEMA (KOHA)
-- 1999
-- 1999
Existencias
Estado Estado perdido Esquema de Clasificación Estado de conservación Tipo de préstamo Tipo de colección Localización permanente Ubicación/localización actual ST Fecha de adquisición Origen de la adquisición Número de inventario Total Checkouts ST completa de Koha Código de barras Date last seen Número de patrimonio Número de copias Tipo de ítem Koha
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