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Within the studied ranges, the maximum daily productivity reached to 9 l/m2.
A maximum daily productivity of about 0.045 kg/m2/day was achieved for X0/a="0.035kg/m2.
The results show that, the best average and maximum daily productivity are obtained from solar stills of single-slope and pyramid-shaped.
The minimum and maximum daily productivity of the studied solar still was approximately 225 and 500 ml in the solar intensity of 20,500 and 25,500 J/m2, respectively.
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However, the maximum daily biomass productivity was 0.4 g/L/day or 20 g/m2/day (Fig. 7), indicating that the productivity could be great improved with further study.
However, it is notable that the maximum daily biomass productivity was 0.4 g/L/day or 20 g/m2/day, which is obtained from day 13 to 15 (Fig. 7).
The maximum daily biomass productivity, 0.55 g/L day, was reached in the tubular photobioreactor for an average irradiance inside the culture of 130 μE/m2s.
A basin type solar still design problem is examined in the present work and the Levenberg-Marquardt Method is utilized to estimate the optimal inclination function for external reflector to obtain maximum daily distillate productivity.
Other information that could be useful in fracture studies includes productivity index (PI), PLT data and maximum daily flow rate.
This equation could be used to predict the daily productivity with a reasonable confidence level (maximum error ±5%).
In this regard, the daily productivity was found to be 7.4 and 4.3 kg/m2day, for minimum and maximum flow rates, respectively.
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