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The energy and exergy efficiencies of the receiver and the overall system can be increased by increasing the DNI and the concentration ratio, but that increment in the efficiencies varies with the values of DNI and the concentration ratio.
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Recovery efficiencies vary 23 33 % of original oil in place over the conventional water flooding.
Oil recovery efficiencies varied from 9.3 to 22.1% of the water flood residual oil saturation.
Enhancement efficiencies varied between 1.4 and 2.6 depending on clearance ratio and interfin spacing ratio.
Solar-to-chemical energy conversion efficiencies varied between 17.3% and 29%.
The results reveal that the ejector component efficiencies vary obviously with geometric parameters and operational conditions.
Calculated energy efficiencies vary between 13% and 16% for β = 70%and30%0% respectively.
The observed percent removal efficiencies varied between 4 and 27.2 % for COD, 0 8.5 % for NH3 N, and 11 90 % for color.
The estimated Murphree efficiencies varied between 57 and 70%, the estimated overall efficiencies between 31 and 62%.
Enhancement efficiencies varied between 1.1 and 1.9 depending on the clearance ratio and inter-fin spacing ratio.
Recovery efficiencies varied between 95.2 and 111%% (Table 2).
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