Related Experiment Video
Updated: Jan 11, 2026

Experimental Protocol to Investigate Particle Aerosolization of a Product Under Abrasion and Under Environmental Weathering
Published on: September 16, 2016
Control of wind speed and contact angle on submicron particulate matter sampling
Bokun Sun1,2, Ziyang Wang1, Jiayun Huang1
1Xi'an Jiaotong-Liverpool University, Suzhou, China.
None:
While particulate matter (PM) instruments are widely used for air quality monitoring and policy development, there is limited research on how wind speed (U 0) and contact angle (θ) affect the measurement accuracy of submicron PM, or particles with their diameters ≤ one µm (PM1). This study addresses this gap by employing a wind tunnel experiment with a common sampling system featuring a customized thick-walled cylindrical metal inlet. The results reveal that wind-induced aerosol losses can reach up to 9%, and the sampling efficiency has a negative linear relationship with U 0 and a third-order polynomial relationship with cos(θ). This model demonstrates a significant discrepancy with classic models in predicting sampling efficiency, which indicates the inapplicability of classic sampling efficiency models to submicron aerosols. The findings of this study can help correct wind-induced errors, improve sampling protocols, and develop new predictive models, which have implications for improving hazardous air quality warning systems and safeguarding public well-being.

