inside small products, such as cereals. Several researchers
[9–12] have endeavored to develop mathematical methods
to investigate the influences of the physical properties of
fruit and heating methods on the evolution of temperature
profiles inside fruits, and the heat transfer rate to the fruit
core, which directly relates to insect mortality.
In an effort to predict maximum wheat temperature during
the heat disinfestation process, Sutherland et al. [21]
developed a model for wheat heat in a pneumatic conveyor,
based only upon heat transfer mechanism, without including
moisture transfer from the grain to the heated air.
Thorpe [17] used his model to predict wheat temperature
in a continuous-flow fluidized bed disinfestor. His model
was derived from a simplified assumption of thermal
equilibrium conditions between air leaving the bed and
grain in the bed, which led to the model not necessarily
dealing with the heat transfer coefficient. The model could
not present the evolution of temperature profiles regarding
the time required for complete mortality, which is useful
for explaining insect death.
inside small products, such as cereals. Several researchers
[9–12] have endeavored to develop mathematical methods
to investigate the influences of the physical properties of
fruit and heating methods on the evolution of temperature
profiles inside fruits, and the heat transfer rate to the fruit
core, which directly relates to insect mortality.
In an effort to predict maximum wheat temperature during
the heat disinfestation process, Sutherland et al. [21]
developed a model for wheat heat in a pneumatic conveyor,
based only upon heat transfer mechanism, without including
moisture transfer from the grain to the heated air.
Thorpe [17] used his model to predict wheat temperature
in a continuous-flow fluidized bed disinfestor. His model
was derived from a simplified assumption of thermal
equilibrium conditions between air leaving the bed and
grain in the bed, which led to the model not necessarily
dealing with the heat transfer coefficient. The model could
not present the evolution of temperature profiles regarding
the time required for complete mortality, which is useful
for explaining insect death.
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