Courses
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Basics of Pipe Stress according to ASME B31.3 and EN 13480By: Dynaflow Research Group
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Understanding Water Hammer Part IBy: Dynaflow Research Group
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How to Review a Pulsation StudyBy: Dynaflow Research Group
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Design and Analysis of FRP piping systems according to ISO 14692By: Dynaflow Research Group
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BOSpulse Foundations: Pulsation AnalysisBy: Dynaflow Research Group
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Pipe Supporting: a Practical GuideBy: Mike Lureman
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Dynamic Pipe stress: Examples and Methods ComparisonBy: Dynaflow Research Group
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EN 13480: Fatigue considerationsBy: Dynaflow Research Group
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PED 2014/68/EU: Documentation and CE MarkingBy: Geert Peeks
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Code Conformance for FRP piping: ISO 14692By: Dynaflow Research Group
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Flow Induced Vibrations (FIV)By: Dynaflow Research Group
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EN 13480: Openings and NozzlesBy: Dynaflow Research Group
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Dynamic Pipe Stress: Modal, Harmonic, Spectrum and Time HistoryBy: Dynaflow Research Group
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Masterclass: API 579-1/ASME FFS-1: Assessment of Crack-Like FlawsBy: Shervin Maleki
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Masterclass: The Foundations of Pipe Stress AnalysisBy: Geronimo Zamora Garcia
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Acoustic and Flow Induced Vibrations (AIV and FIV) in Industrial SystemsBy: Dynaflow Research Group
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Actuated Valves: Accessories & HardwareBy: Frans Martens
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Actuated Valves: RequisitioningBy: Frans Martens