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A one-dimensional computational heat transfer model is developed.
Experimental data was used to calibrate the heat transfer model.
A heat transfer model including the dispersion effect was developed.
The heat transfer model contains the same number of equations for each node.
The heat transfer model has been implemented in a C computation code.
Ahsan and Fukuhara (2010) developed a mass and heat transfer model of tubular solar still (TSS).
The heat transfer model considered uses linear transfer law (constant heat transfer conductance).
The code also has specific models for the developed integral reactor, such as a helical tube heat transfer model and a passive residual heat transfer model.
Proposed mass and heat transfer model should be tested for distillate output with varying depth in TSS.
In the heat transfer model, C1 and C2 constants are not physical quantities and may differ from engine to engine.
This paper signifies a novel heat transfer model for performance assessment of a NHE system.
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