News & Insights from Dynaflow Research Group

Fiberglass Engineering

Safety Factors Fiberglass Engineering

Safety Factors in Fiberglass Engineeringby Mick Bouman (Fiberglass Engineering) For a pipe system or an individual component an engineer must always verify whether the strength

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Dynaflow Research Group

Dynaflow webinars online

Dynaflow Research Group regularly hosts technical webinars. These webinars, which are FREE to watch, are recorded and made available online through our YouTube channel. A

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Engineering Training

Parallel Programming

Starting February 11th 2020, our Software Director Erik Jan Lingen together with Matthias Möller from the Faculty of Mathematics will present a course (WI4265TU) on

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Dynaflow Research Group

ISO 9001:2015 Certification

Dynaflow Research Group (DRG) has recently been accredited with the quality management standard NEN-EN-ISO 9001:2015. Today, Niels Bos from Dynaflow Research Group received the official  ISO9001 certificate from Vincent

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Engineering Training

NozzlePRO Online training

There has been a demand for Online FEPipe and NozzlePRO training courses for many years. We are happy to announce that next month we will

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ISOtracer
Training

ISOtracer Free Online course

For the last couple of months DRG is expanding its training activities online in association with the e-learning platform EngineeringTrainer.com. Our newest online course regards

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Engineering Training

EngineeringTrainer.com

Besides classroom courses taught at our offices in The Netherlands, The Middle-East or at client premises, we are expanding our training portfolio with online courses.

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Fiberglass Engineering

ISO/TC 138/SC 6

DRG hosting the ISO/TC 138/SC 6 and WG’s meetings Zoetermeer, 17, 18 and 19 September DRG is hosting the 3-day ISO/TC 138/SC 6 and WG’s

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Training

Dutch OpenFOAM user’s group

DRG presents at the Dutch OpenFOAM User’s Group 2018 DRG is actively involved in the research and application for Computational Fluid Dynamics (CFD) and Discrete

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Fluid Flow

API 674 Acoustical study

API 674 Acoustical study, some differences between design approach 1 (DA1) and design approach 2 (DA2) When purchasing or delivering a reciprocating pump an API674

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Fiberglass Engineering

Revised ISO 14692: 2017

Recently in the fall of 2017 a renewed edition of the ISO14692, the governing standard for fiber reinforced plastic piping, was officially released. The objective

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Consulting

The new 2017 ASME B31J

B31J: The answer to Markl’s 1950’s flexibilty factors The new 2017 ASME B31J Up to recent years most pipe flexibility analyses and more specifically Caesar

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Fluid Flow

DFC2017 keynote

DFC2017 keynote: Simulation requirements for oil and gas transport in pipeline systems Presentation by Prof. dr. ir. Ruud A.W.M. Henkes (Shell Projects and Technology/Delft University

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Fluid Flow

DFC2017 abstracts

DFC2017 abstracts: Efficient Industrial Conjugate Heat Transfer in HELYX v3 Presentation by Dr. Eugene de Villiers PhD. MSc. DIC (Engys UK) DRG is proud to

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Software

Upcoming webinar

Analysis of Surge problems with CAESAR II and BOSfluids 5.4 The webinar Together with Hexagon PPM, DRG is co-hosting a free webinar on Analysis of

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Uncategorized

Pulsations Paper

Benefit of computational simulation of a pulsation dampener compared to an analytical method Accumulators are used to reduce pressure pulsations from reciprocating pumps by adding

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Analysis model of a single radiant coil extended to include the revised outlet piping and its support.
Oil & Gas - Refining

Static Stress Analysis of a Furnace Coil Outlet Piping

Furnace F-501 at a refinery heats crude through radiant coils made of A312 TP316Ti stainless steel. Each coil enters the radiant section at grade level, runs 21 loops parallel to the refractory lined furnace wall, crosses over to the roof section, makes 8 further loops against the roof, and leaves

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Mode shapes of the three lowest natural vibration modes, at 1.1 Hz, 1.2 Hz and 1.5 Hz.Mode shapes of the three lowest natural vibration modes, at 1.1 Hz, 1.2 Hz and 1.5 Hz.
Oil & Gas - Refining

Static and Modal Analysis of a Failed Desuperheater Branch Connection

At a refinery, a branch connection designated W31056, the 2″ line that ties in to the high-pressure steam attemperator J-3103 (a desuperheater), failed in service. A similar failure had occurred about twenty years earlier, in 1992. On-site observations report periodic movement of the connecting header, line 6″-S31022, which contains the

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Three-dimensional illustration of the analysed cooling water header system.
Oil & Gas - Refining

Flexibility Analysis of a GRE Cooling Water Header Replacement

Two existing steel cooling water headers were to be replaced with Glass Reinforced Epoxy (GRE) piping under two Technical Change Requests. This case study covers the first request, for the main cooling water header “boiler”. The second, covers the “lube” header. A flexibility analysis was required, together with recommendations, to

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A hydrogen pipeline to houses illustrating the transformation of the energy sector towards clean, carbon-neutral, safe and independent energy sources to replace natural gas in homes.

Mitigating Vibration-Induced Fatigue in Hydrogen Compressor Branches

Recently, fatigue cracks were discovered in the first-stage discharge line’s small-bore instrumentation branches of a hydrogen compressor. Initial investigations pointed to excessive out-of-plane vibrations as the primary driver of these failures. While the system was originally installed in 1995 with a pulsation study, and further axial supporting was added in

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Finite Element Analysis and Verification of Actuator Type F35-340

Finite Element Analysis and Verification of Actuator Type F35-340

Introduction This case study presents the finite element analysis (FEA) and verification process conducted for the pressure-containing parts of the F35-340 actuator, developed by Actuator Technology Company. The primary goal was to demonstrate the structural integrity of the actuator under specified operating conditions and to ensure compliance with the requirements

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Fatigue Assessment of the 28L Oil Separator

Fatigue Assessment of the 28L Oil Separator

This case study presents the fatigue assessment of the 28L oil separator (Atlas part number 1625481501), performed to verify the vessel’s durability under cyclical internal pressure in accordance with the AD2000 S2 standard. The separator is subject to a cyclic pressure loading from atmospheric pressure up to 15 barg, which

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