DoctorCraig McConnochie
Senior Lecturer Above the Bar
Civil and Environmental Engineering
Orcid identifier0000-0001-7105-192X (opens in a new tab)
- Senior Lecturer Above the BarCivil and Environmental Engineering
- +6433690635 (Work)
BIO
I'm interested in environmental fluid mechanics - in particular, buoyancy driven flows and heat transfer.
My work has mainly focused on improving our understanding of the melting of ice shelves and icebergs around Antarctica and Greenland. Understanding the small scale processes that govern the melt rate can help us predict how these ice sheets will respond to a warming climate over coming decades.
Some other problems that I have worked on or am interested in are:
Mixing into sediment laden plumes, such as volcanic eruptions or smokestack discharges, to understand how quickly they will dilute and where the flow will go.
The small scale processes that control turbulent mixing in a variety of fluid flows, particularly in a density stratified environment where fluid can mix both into and out of a flow.
Low energy (or no energy) ventilation of buildings to reduce energy consumption.
To understand these problems I use idealized laboratory experiments and simple models. Laboratory experiments are able to include all of the important physical processes while still being controllable and repeatable. They are a wonderful tool for understanding fluid dynamics that can also produce beautiful imagery.
My work has mainly focused on improving our understanding of the melting of ice shelves and icebergs around Antarctica and Greenland. Understanding the small scale processes that govern the melt rate can help us predict how these ice sheets will respond to a warming climate over coming decades.
Some other problems that I have worked on or am interested in are:
Mixing into sediment laden plumes, such as volcanic eruptions or smokestack discharges, to understand how quickly they will dilute and where the flow will go.
The small scale processes that control turbulent mixing in a variety of fluid flows, particularly in a density stratified environment where fluid can mix both into and out of a flow.
Low energy (or no energy) ventilation of buildings to reduce energy consumption.
To understand these problems I use idealized laboratory experiments and simple models. Laboratory experiments are able to include all of the important physical processes while still being controllable and repeatable. They are a wonderful tool for understanding fluid dynamics that can also produce beautiful imagery.
TE WHARE WĀNANGA O WAITAHA - UNIVERSITY OF CANTERBURY APPOINTMENTS
- Senior Lecturer Above the BarUniversity of Canterbury, Civil and Environmental Engineering, Faculty of Engineering7 Jan 2019 - present
DEGREES
- PhDThe Australian National University, Research School of Earth Science, Australia
- BE (Hons) in Natural Resources EngineeringUniversity of Canterbury, Department of Civil and Natural Resources Engineering, New Zealand
FACULTY
- Faculty of Engineering
GRADUATE RESEARCH SUPERVISION
- Registered to supervise Master's/Doctoral students
SUSTAINABLE DEVELOPMENT GOALS
- 6 Clean Water and Sanitation
- 13 Climate Action
- 11 Sustainable Cities and Communities
AVAILABILITY
- Collaborative research projects
- Consulting & advisory services
- Industry partnerships & innovation
- Media enquiries
- Outreach & community engagement
- Policy advice & government consultation
- Technical expertise & support