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About the database ScholarIQanswers from OpenAlex & ORCID
How has R. M. Dorrell's publication output changed over time?
ScholarIQpublication output · 2013–2025
Output grew0% over the shown period — from 1 works in 2013 to 1 in 2025.
1
4
1
1
2
1
1
2013201420162017202020222025
What are the most-cited papers on R. M. Dorrell?
ScholarIQmost cited works
Autonomous Underwater Vehicles (AUVs): Their past, present and future contributions to the advancement of marine geoscience
Russell B. Wynn, Veerle A.I. Huvenne, T. P. Le Bas, Bramley J. Murton, Douglas P. Connelly, Brian J. Bett, Henry A. Ruhl, Kirsty J. Morris, Jeff Peakall, Daniel R. Parsons, E. J. Sumner, Stephen E. Darby, R. M. Dorrell, James E. Hunt
S5042006. 2014984 CitationsOPEN ACCESS
Turbulence Processes Within Turbidity Currents
Mathew G. Wells, R. M. Dorrell
S169493037. 2020121 CitationsOPEN ACCESS
An integrated process‐based model of flutes and tool marks in deep‐water environments: Implications for palaeohydraulics, the Bouma sequence and hybrid event beds
Jeff Peakall, Jim Best, Jaco H. Baas, David M. Hodgson, Michael Clare, Peter J. Talling, R. M. Dorrell, David R. Lee
S42573498. 202091 CitationsOPEN ACCESS
Hydrodynamics of fossil fishes
Tom Fletcher, John D. Altringham, Jeff Peakall, Paul B. Wignall, R. M. Dorrell
S3006207977. 201473 CitationsOPEN ACCESS
Flow dynamics and mixing processes in hydraulic jump arrays: Implications for channel-lobe transition zones
R. M. Dorrell, Jeff Peakall, E. J. Sumner, Daniel R. Parsons, Stephen E. Darby, R. B. Wynn, Emi̇n Özsoy, Devrim Tezcan
S5042006. 201672 CitationsOPEN ACCESS
Related on ScholarIQ
Loughborough University
Institution
Autonomous Underwater Vehicles (AUVs): Their past, present and future contributions to the advancement of marine geoscience
Paper
Turbulence Processes Within Turbidity Currents
Paper
An integrated process‐based model of flutes and tool marks in deep‐water environments: Implications for palaeohydraulics, the Bouma sequence and hybrid event beds
Paper
Hydrodynamics of fossil fishes
Paper
Flow dynamics and mixing processes in hydraulic jump arrays: Implications for channel-lobe transition zones
Paper