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To simulate the H2O emission from an H2/O2 diffusion flame, radiative transfer is calculated on flame data obtained by numerical simulation.
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In the first case study, the heat transfer was calculated on a structure with complex geometry, for which empirical formulas are hardly applicable.
The energy transfer was calculated to 91%.
The efficiency of the energy transfer was calculated based on the decrease in the donor (GFP) fluorescence intensity, Eq. (4).
The rate of energy transfer was calculated based on loss of donor fluorescence using the following equation: E=1- FDA/FD), whE=1- FDA/FD FD are the fluorescence of CFP in the presence and absence of TC-FLASH, respectively.
Therefore, in this section, the heat transfer in heat exchanger is calculated on the basis of logarithmic mean temperature difference (LMTD), and ΔT refers to the logarithmic mean value.
In addition, the centroid locale for all individuals involved in transfers was calculated to gain a better estimate of each individual's home area based on trapping locations.
It is calculated on a sliding scale.
The EU budget is calculated on a rolling monthly basis.
Income tax is calculated on top.
For the heat exchangers heat transfer coefficients and pressure drop are calculated on both fluid sides depending on the geometry, flow conditions and thermal properties using empirical correlations available in literature.
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