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Average odor was lowest at medium wind speed (1.23 ± 0.20, mean ± SE).
Parameters for low and high wind speeds were estimated in mixed models with medium wind speed as the referent (Table 6).
Compared with the odor at medium wind speed, odor was higher by 0.18 ± 0.07 units at low wind speeds and by 0.38 ± 0.13 units at high wind speeds.
A mixed model with fixed effects for wind speed and random effects for H2S showed that H2S and odor were not associated at medium wind speed (−0.09 ± 0.10/1 ppb, mean ± SE).
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This was particularly the case with medium wind speeds (mean 3.9 knots).
Finally, this tool has been applied to design two vertical axis wind turbines optimized for low and medium wind speeds.
The objective of this study was to identify a conceptual configuration that could become operational at low and medium wind speeds.
In contrast, PM10 was associated with odor at high wind speeds (0.45 ± 0.14/10 μg/m; t = 3.14), but not at low or medium wind speeds.
In addition, environmental factors such as temperature (Senyanzobe et al. 2013), humidity, water balance, rooting medium, light intensity, wind speed, and pests and diseases, are also limiting factors for the macropropagation (Banik 1995).
Precipitation, temperature, wind speed.
Inlet wind speed (m/s).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com