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Dive into the research topics where Lisa C. Mayo is active.

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Featured researches published by Lisa C. Mayo.


Experiments in Fluids | 2015

Impaction of spray droplets on leaves: influence of formulation and leaf character on shatter, bounce and adhesion

G. J. Dorr; Shuangshuang Wang; Lisa C. Mayo; Scott W. McCue; W. Alison Forster; Jim Hanan; Xiongkui He

This paper combines experimental data with simple mathematical models to investigate the influence of spray formulation type and leaf character (wettability) on shatter, bounce and adhesion of droplets impacting with cotton, rice and wheat leaves. Impaction criteria that allow for different angles of the leaf surface and the droplet impact trajectory are presented; their predictions are based on whether combinations of droplet size and velocity lie above or below bounce and shatter boundaries. In the experimental component, real leaves are used, with all their inherent natural variability. Further, commercial agricultural spray nozzles are employed, resulting in a range of droplet characteristics. Given this natural variability, there is broad agreement between the data and predictions. As predicted, the shatter of droplets was found to increase as droplet size and velocity increased, and the surface became harder to wet. Bouncing of droplets occurred most frequently on hard-to-wet surfaces with high-surface-tension mixtures. On the other hand, a number of small droplets with low impact velocity were observed to bounce when predicted to lie well within the adhering regime. We believe this discrepancy between the predictions and experimental data could be due to air layer effects that were not taken into account in the current bounce equations. Other discrepancies between experiment and theory are thought to be due to the current assumption of a dry impact surface, whereas, in practice, the leaf surfaces became increasingly covered with fluid throughout the spray test runs.


Ecological Modelling | 2014

Towards a model of spray–canopy interactions: Interception, shatter, bounce and retention of droplets on horizontal leaves

G. J. Dorr; Daryl M. Kempthorne; Lisa C. Mayo; W. Alison Forster; Jerzy A. Zabkiewicz; Scott W. McCue; John A. Belward; Ian Turner; Jim Hanan


Physical Review E | 2013

Gravity-driven fingering simulations for a thin liquid film flowing down the outside of a vertical cylinder.

Lisa C. Mayo; Scott W. McCue; Timothy J. Moroney


ieee international conference on high performance computing data and analytics | 2016

Spray retention on whole plants: modelling, simulations and experiments

G. J. Dorr; W. Alison Forster; Lisa C. Mayo; Scott W. McCue; Daryl M. Kempthorne; Jim Hanan; Ian Turner; John A. Belward; Joseph A. Young; Jerzy A. Zabkiewicz


Science & Engineering Faculty | 2015

Impaction of spray droplets on leaves: Influence of formulation and leaf character on shatter, bounce and adhesion

G. J. Dorr; Shuangshuang Wang; Lisa C. Mayo; Scott W. McCue; W. Alison Forster; Jim Hanan; Xiongkui He


School of Mathematical Sciences; Science & Engineering Faculty | 2015

Mathematical modelling of the impaction and spreading of spray droplets on leaves

Lisa C. Mayo


Bulletin of the American Physical Society | 2015

Simulations of contact angle induced pearling for sliding drops

Scott W. McCue; Lisa C. Mayo; Timothy J. Moroney


ARC Centre of Excellence for Mathematical & Statistical Frontiers (ACEMS); Science & Engineering Faculty | 2015

Simulating droplet motion on virtual leaf surfaces

Lisa C. Mayo; Scott W. McCue; Timothy J. Moroney; W. Alison Forster; Daryl M. Kempthorne; John A. Belward; Ian Turner


ARC Centre of Excellence for Mathematical & Statistical Frontiers (ACEMS); Institute for Future Environments; Science & Engineering Faculty | 2014

Towards a model of spray-canopy interactions : interception, shatter, bounce and retention of droplets on horizontal leaves

G. J. Dorr; Daryl M. Kempthorne; Lisa C. Mayo; W. Alison Forster; Jerzy A. Zabkiewicz; Scott W. McCue; John A. Belward; Ian Turner; Jim Hanan


Institute for Future Environments; Science & Engineering Faculty | 2013

Gravity-driven fingering simulations for a thin liquid film flowing down the outside of a vertical cylinder

Lisa C. Mayo; Scott W. McCue; Timothy J. Moroney

Collaboration


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Scott W. McCue

Queensland University of Technology

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Timothy J. Moroney

Queensland University of Technology

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G. J. Dorr

University of Queensland

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Jim Hanan

University of Queensland

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Daryl M. Kempthorne

Queensland University of Technology

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Ian Turner

Queensland University of Technology

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Shuangshuang Wang

China Agricultural University

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