Journal
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING
Volume 231, Issue 9, Pages 1160-1176Publisher
SAGE PUBLICATIONS LTD
DOI: 10.1177/0954407017695141
Keywords
Vehicle aerodynamics; multi-phase flow; surface contamination; soiling; exterior water management; computational fluid dynamics
Funding
- Jaguar Land Rover
- UK Engineering and Physical Sciences Research Council [EP/K014102/1, EP/N016602/1, EP/K038664/1, EP/I011927/1]
- EPSRC [EP/N016602/1, EP/K014102/1, EP/K038664/1, EP/I011927/1] Funding Source: UKRI
- Engineering and Physical Sciences Research Council [EP/K014102/1, EP/I011927/1, EP/N016602/1, EP/K038664/1, 1310831] Funding Source: researchfish
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This review surveys the problem of surface contamination of cars, which poses a growing engineering challenge to vehicle manufacturers, operators and users. Both the vision of drivers and the visibility of vehicles need to be maintained under a wide range of environmental conditions. This requires managing the flow of surface water on windscreens and side glazing. The rate of deposition of solid contaminants on glazing, lights, licence plates and external mirrors also needs to be minimised. Maintaining vehicle aesthetics and limiting the transfer of contaminants to the hands and clothes of users from soiled surfaces are also significant issues. Recently, keeping camera lenses clean has emerged as a key concern, as these systems transition from occasional manoeuvring aids to sensors for safety systems. The deposition of water and solid contaminants on to car surfaces is strongly influenced by unsteady vehicle aerodynamic effects. Airborne water droplets falling as rain or lifted as spray by tyres interact with wakes, vortices and shear flows and accumulate on vehicle surfaces as a consequence. The same aerodynamic effects also control the movement of surface water droplets, rivulets and films; hence, particular attention is paid to the management of surface water over the front side glass and the deposition of contaminants on the rear surfaces. The test methods used in the automotive industry are reviewed, as are the numerical simulation techniques.
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