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Published on: June 9, 2023
Wind tunnel system to apply precooling airflow and cooling conditions for fruit chilling injury assessment
Eugene Sadie1, Corne Coetzee1, Mike Owen1
1Department of Mechanical and Mechatronic Engineering, Stellenbosch University, Stellenbosch, South Africa.
Abstract:
Chilling injury (CI) affects up to 33% of globally traded postharvest commodities, yet the influence of precooling conditions on CI susceptibility remains largely unexplored. This is likely due to the inherent complexity and variability of commercial operations. This study introduces a novel methodology to systematically evaluate precooling-CI interactions under controlled laboratory conditions. The approach is grounded in commercial precooling characteristics and comprehensive cold chain CI evaluation protocols. A laboratory forced-air cooling system was developed, consisting of wind tunnels installed in existing cold rooms to replicate commercial precooling airflow speeds and cooling rates. The wind tunnels operate over a 0.0-0.9 m s-1 range, with an uncertainty of <3.6% at a 99% confidence level. The system successfully reproduced commercial precooling conditions and induced statistically significant, differentiable CI responses in citrus trials. The methodology provides researchers with a reproducible platform for investigating precooling optimisation strategies and CI mitigation for both citrus and other fruit types, with potential applications in postharvest technology development and supply chain optimisation. Key methodological components include:•Characterisation of commercial precooling conditions to establish realistic design parameters•Development and application of a laboratory-scale wind tunnel precooling simulator•Chilling injury evaluation protocol for precooling protocol assessment.

