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Piping Stress Analysis
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Pressure Vessel Design And Detailing
Heat Exchanger Design And Detailing
Thermal Design of Heat Exchangers
Skid Engineering
Computational Fluid Dynamics(CFD), Finite Element Analysis(FEA) and Simulation
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Static Equipment / ASME BPVC Design Course
API 650 Storage Tanks Course
Process Design Engineering And Analysis Course
Piping Stress Design & Analysis Course
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Static Equipment / ASME BPVC Design Course
WHY CHOOSE THE COURSE
PROCESS EQUIPMENT DESIGN (PED) COURSE DEALS WITH REQUIREMENTS APPLICABLE TO THE DESIGN, FABRICATION, INSPECTION AND TESTING OF STATIC EQUIPMENT.
ALL PRACTICAL ASPECTS OF PROCESS EQUIPMENT DESIGN WITH SOLVED INDUSTRIAL EXAMPLES.
DETAILED EXPLANATION VIA DRAWINGS, SKETCHES, IMAGES AND PRESENTATION.
MANUAL AND SOFTWARE CALCULATION.
ASME BPVC, TEMA COVERED IN DETAIL.
HIGHLY EXPERIENCED FACULTY WORKING IN OIL AND GAS, CHEMICAL AND PETROCHEMICAL DOMAIN.
DELEGATES ATTENDING PED COURSE WILL DEVELOP THE FOLLOWING COMPETENCIES
Understand and Implement the Code rules and clauses.
Perform Design Calculations as well as Technical Document review.
Prepare reports, specifications, attend client and vendor queries.
Perform estimation studies and prepare proposals.
Inspection assistance.
Software Competency.
Module 1: BRIEF INTRODUCTION TO PROCESS EQUIPMENT INDUSTRY
Brief on different types of Static equipment: Industrial Use and Implementation.
Co-Relation between Client, EPC Consultant, Fabricator and Inspection Agency.
Functional Aspects & Broad Classification of Process Equipment’s.
Module 2: METALLURGY FOR PROCESS EQUIPMENT
Overview of Material used for Process Equipment
Service Types and Material suitability.
Material Selection Criteria.
Material Grading System as per Code.
Chemical Composition and its Significance.
Different Product forms of Material, Relevant use. Gasket Types and Selection.
Exhaustive list of different grades of material based on Selection Criteria.
Strength of Material Concepts i.e. Stress Strain, Yield and Tensile concepts and its correlation with Equipment Design.
Sour Gas Service, Wet H2S Service, Hydrogen Service and Refinery requirements and Factors governing Material Selection.
Module 3: DESIGN TECHNIQUES -1
Concept of Design for Pressure parts and Non-pressure parts and Design Conditions.
Shell and Dish end, Conical Geometry and Types.
Stress Types and Load Conditions.
Internal Pressure and External Pressure (Vacuum) Design.
Combined Loading Analysis.
Stiffening Ring: Types, Design and Construction.
Nozzle Neck and Reinforcement Check, Nozzle Insert plate and Self- reinforced nozzle.
WRC ( 107/ 537/ 297) Analysis and its Study.
MAWP (Max. Allowable Working pressure), MAP (Max. Allowable Pressure) Concept.
Different Types of Loadings and Maximum Allowable Stress concept.
Flat head Design and Flange Rating Check.
Flange Design: Types, Standard and Non-Standard Design.
Wind and Seismic Analysis as per geographical code.
Support Types: Leg, Lug, Skirt and Saddle and its Analysis.
Anchor Bolt Design.
Lifting Lug and Tailing Lug Analysis.
Jacketed vessel and Limpet Coil (Half Pipe Jacket).
Module 4: DESIGN TECHNIQUES -2
ASME Sec VIII Div.1: Study and Interpretation OF Important Code clauses.
ASME Sec II Part A, B, C and D: Study and Interpretation OF Important Code clauses.
Hydrotest Pressure and Pneumatic Test pressure.
Basics of Welding, Weld Sizing calculation and Welding Symbols.
Post Weld Heat Treatment: Types and Methodology as per Code.
IMPACT Testing Requirement: Interpretation and Application.
Equipment Internals and Types
Module 5 : HEAT EXCHANGERS: DESIGN, CONSTRUCTION AND ANALYSIS
Basics of Heat Exchanger, Function and Types.
TEMA Code: Introduction and Interpretation.
ASME UHX: Introduction and Interpretation.
Heat Exchanger Classification
Design of Heat Exchanger Parts: Shell, Channel, Tubes and Tube sheet.
Heat Exchanger Components: Tie Rods & Spacers, Baffles, Sealing and Sliding Strips.
Heat Exchanger Types: Fixed, Floating and U Tube Sheet./li>
Tube to Tubesheet Joint Types and its Code Relevance.
Module 6 : SOFTWARE
Analysis of Equipment in Software covering all components.
Study of Software Reports
Root cause of errors and warning.
Error and Warning Resolution.
Module 7: STATIC EQUIPMENT DESIGN PROFILE
Design Profile at Fabricator, Engineering Consultant and Inspection Agency.
Concept of Datasheet, Requisition, Technical Queries and Technical Bid Evaluation.
Important parameters of review of Vendor Drawings and Calculation.
Interdisciplinary Coordination and information flow.
Vendor and Interdisciplinary Query resolution.
KEY FEATURES
INDUSTRY ORIENTED TOPICS.
DETAILED UNDERSTANDING OF CODE CONCEPTS.
DETAILED STUDY OF STANDARDS AND SPECIFICATIONS.
MANUAL CALCULATION.
PRESENTATION SLIDE EXPLANATION.
EXHAUSTIVE STUDY MATERIAL: HAND WRITTEN NOTES AND REFERENCE BOOKS.
LIVE INDUSTRIAL EXAMPLES.
TESTS, EXAM AND LIVE PROJECT WORK.
PEOPLE WHO CAN ATTEND THIS TRAINING COURSE?
DESIGN ENGINEERS.
QUALITY CONTROL ENGINEERS
ESTIMATION AND PROPOSAL ENGINEERS
INSPECTION ENGINEERS.
MAINTAINENCE ENGINEERS.
GRADUATE MECHANICAL AND CHEMICAL ENGINEERS
FABRICATION ENGINEERS.
MODE OF CONDUCTING THE COURSE
ONLINE
OFFLINE
ONLINE + OFFLINE
BATCH
ONE TO ONE COACHING
BATCH MODE
Training dates and timings are very flexible as per requirement.