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An analytical physical model and a complete experimental characterization of the sensor are presented.
The physical model and governing equation of it are established under several suitable assumptions.
The designed photovoltaic thermal collector was reduced to a 2 dimension physical model and numerically studied.
In this paper the equipment, physical model and calibration routines are described.
For our experiment, respondents were shown a physical model and a virtual model consecutively.
The physical model and numerical method for estimating different kinds of losses in CICCs are proposed.
The paper illustrates the physical model and the reduced-order linear state-space model with examples.
This strategy makes use of an (uncertain) physical model and on-line temperature measurements.
The physical model and the numerical setup are optimized with respect to computing time and accuracy.
The designed solar collector was reduced to a 3 dimension physical model and numerically studied.
The observed results were interpreted using the physical model and equivalent circuit.
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