This pedagogical note presents a novel learning activity (the icebox challenge) that was designed to facilitate deep learning of building physics energy transfer principles through a planning, prediction and analysis process following the Kolb learning cycle. The success of this strategy was evidenced by students relating and collating their knowledge and theoretical ideas and applying them to successfully solve a series of complex and inter-related practical building physics problems.
Beausoleil-MorrisonIHopfeCJ (2015) Teaching building performance simulation through a continuous learning cycle. In: 14th Conference of International Building Performance Simulation Association, Hyderabad, India, 7–9 December. pp.2757–2764.
2.
Beausoleil-MorrisonIHopfeCJ (2016a) Developing and testing a new course for teaching the fundamentals of building performance simulation. In: Proceedings of eSIM conference 2016, Hamilton, Canada, pp.1–12.
3.
Beausoleil-MorrisonIHopfeCJ (2016b) Teaching building performance simulation: ever done an autopsy? In: The 3rd building simulation and optimization 2016 (BSO2016), Newcastle University, 12–14 September.
4.
HopfeCJMcLeodRS (2015) The Passivhaus Designer’s Manual: A Technical Guide to Low and Zero Energy Buildings. Routledge, 328p.
5.
KalisMMKirschenbaumHL (2008) Faculty awards at US colleges and schools of pharmacy. American Journal of Pharmaceutical Education72(4): 85.
6.
KolbDA (1984) Experiential Learning: Experience as the Source of Learning and Development. Prentice-Hall.
7.
KolbDA (2015) Experiential Learning: Experience as the Source of Learning and Development, 2nd edn.Pearson FT Press.
8.
MantesiEHopfeCJCookMJ, et al. (2018) The modelling gap: Quantifying the discrepancy in the representation of thermal mass in building simulation, Building and Environment131: 74–98.
9.
McLeodRSHopfeCJKwanA (2013) An investigation into future performance and overheating risks in Passivhaus dwellings. Building and Environment70: 189–209.
10.
MourkosKHopfeCJMcLeodRS, et al. (2020) The impact of accurately modelling corridor thermodynamics in the overheating risk assessment of multi-residential dwellings, Energy and Buildings 224, Epub ahead of print 19 August 2020. DOI: 10.1016/j.enbuild.2020.110302
11.
NichollsG (2002) Developing Teaching and Learning in Higher Education. London, UK: Routledge Falmer.
12.
Nicholson Kovalchick Architects (NKA) (2017) Available at: https://bit.ly/325MmR5 (accessed 23 July 2020).
13.
ShabaniKKhatibMEbadiS (2010) Vygotsky’s zone of proximal development: Instructional implications and teachers’ professional development. English Language Teaching3(4): 237–248.