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Four influencing factors of hydrocarbon critical temperature, experiment temperature, pressure and hydrocarbon/water density difference were considered as independent correlating variables to design and develop the correlation.
A design of experiments approach was adopted to determine the critical mixtures necessary to develop the correlation.
Quantitative structure property relationship (QSPR) method is used to develop the correlation models between the structures of a great number of organic compounds and their Henry's law constants in water.
In conformity with the experimentally revealed heat transfer physics, a regression-type analysis is performed to develop the correlation of spatially-averaged Nusselt number over rib-roughened fin surface, which permits the individual and interactive effect of Re and L/B on heat transfer to be evaluated.
He used 160 data sets from 69 Middle Eastern reservoirs to develop the correlation.
As shown in Fig. 9, eight data points were used to develop the correlation.
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(2001) were utilized to develop the correlations of IAC and bubble diameter for group 2 bubbles.
Mercury air and air water capillary pressure curves were used to develop the correlations.
Two hundred and fifty published data with the higher heating values ranging from 5.63 to 23.46 MJ/kg are used to develop the correlations.
A total of 205 polymer/non-polar solvent systems with 1708 data points, and 118 polymer/polar solvent systems with 695 data points were used to develop the correlations.
They used 90 data sets from 30 independent reservoirs in the Gulf of Suez to develop the correlations.
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