On-Demand
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Sizing Openings and Nozzles according to EN 13445By: Dynaflow Research Group
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Slug Flow and CavitationBy: Dynaflow Research Group
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Soil Pipe InteractionBy: Dynaflow Research Group
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Solving Overstressed Piping SystemsBy: Dynaflow Research Group
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Steady-State Analysis in BOSfluidsBy: Dynaflow Research Group
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Stress Corrosion Cracking (SCC)By: Christian Lewis
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Supporting and Load Conditions for Piping SystemsBy: Dynaflow Research Group
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The NozzlePRO Options Menu & SettingsBy: Dynaflow Research Group
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The NozzleShell Template in FEPipeBy: Dynaflow Research Group
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Thin vs Thick-walled pipingBy: EngineeringTrainer
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Transient Flow Analysis in BOSfluidsBy: Dynaflow Research Group
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Types of pipe stress analysisBy: Stressman Engineering
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Underground Application of FRP piping systemsBy: Dynaflow Research Group
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Underground Supporting and Structures for Buried PipingBy: Dynaflow Research Group
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Understanding Vibrations in Piping SystemsBy: Dynaflow Research Group
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Valve Actuator FundamentalsBy: Frans Martens
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Valve Actuators: Operation and MaintenanceBy: Frans Martens
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Valve Actuators: RequisitioningBy: Frans Martens
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Wall thickness calculations for Industrial PipingBy: Stressman Engineering
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Water Hammer Phenomena in Industrial Piping SystemsBy: EngineeringTrainer
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Water Hammer Theory, Load Cases & Mitigation MeasuresBy: Dynaflow Research Group
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Water Hammer case study 1: Valve Closure in a cooling water systemBy: Dynaflow Research Group
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Water Hammer case study 2: Pump trip & cavitationBy: Dynaflow Research Group
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Water Hammer case study 3: Filling of an empty fire-fighting systemBy: Dynaflow Research Group
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Water Hammer case study 4: LNG offloading jettyBy: Dynaflow Research Group
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Water Hammer case study 5: Complex NetworksBy: Dynaflow Research Group
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What is Fatigue?By: Johannes Homan
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Crevice CorrosionBy: Christian Lewis
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Galvanic CorrosionBy: Christian Lewis
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Hydrogen DamageBy: Christian Lewis
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Intergranular Corrosion (IGC)By: Christian Lewis
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Pitting & Localised CorrosionBy: Christian Lewis