Malachy O'Rourke

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College Lecturer

Dublin City University
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Ireland

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Malachy O'Rourke is a College Lecturer at University College Dublin, Ireland. His research focuses on aerodynamic drag reduction methods for various types of vehicles, including road vehicles and emergency vehicles. He has contributed to several recent articles discussing advancements in drag reduction technologies and their applications, as well as investigating the effects of shear stress in human pulmonary endothelial cells.

Recent Grants

Grant: Open

Computational Fluid Dynamics in Surgical Planning and Post Operative Treatment of Tetralogy of Fallot and Coarctation of Aorta

Open Date: 2023-09-01

Close Date: 2027-08-01

Grant: Close

Particle image velocimetry for precise 3D measurement of flow and aerosols

Open Date: 2023-07-01

Close Date: 2024-07-01

Grant: Close

A preclinically validated solution to enable treatment of >90% of patients with Tricuspid Regurgitation

Open Date: 2023-03-01

Close Date: 2026-02-01

Grant: Close

Is the cyclic nature of wall shear stress, rather than its magnitude, the prevailing factor in endothelial cell detachment and dysfunction?

Open Date: 2014-09-01

Close Date: 2018-08-01

Articles (7)

Reducing Aerodynamic Drag on Flatbed Trailers for Passenger Vehicles Using Novel Appendable Devices

This article presents a study on the aerodynamic drag of a generic dual-axle flatbed trailer and explores ways to reduce the drag using appendable drag-reducing devices. The primary sources of drag originated from the van and trailer’s rear, along with the trailer’s wheels. The most-effective initial device for reducing drag was a full trailer underside cover, which offered a 7% drag reduction. Additionally, ladder racks, dropsides, and rear gates were studied, and it was found that protruding ladder racks significantly increased drag. Rear gates added large amounts of drag and should be removed and stored when not needed. The study also explored novel mid-section devices that increased the van’s base pressure and reduced drag. An axle test revealed that drag for single-, dual-, and triple-axle trailers was very similar in direct flow, but different in yawed flow. A drawbar length test showed a near-linear relationship between drawbar length and drag, manifesting as a 1.7% change in drag per 250 mm change in drawbar length. Several novel modifications were made to the trailer, including fitting six unique appendable devices, which offered a total 7.3% drag reduction. A novel rear van device known as the multi-stage converging cavity was introduced, which reduced drag by nearly 18%. When all the devices were used together, a total 25% drag reduction was observed for the van–trailer combination.

Year:

2023

Collaborators (2)

Alojz Ivankovic

Dublin City University

IRELAND

Paul McLoughlin

Dublin City University

IRELAND
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