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Temperature Fluctuation and Evaporative Loss Rate in an Algae Biofilm Photobioreactor

机译:藻类生物膜光生物反应器中的温度波动和蒸发损失率

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摘要

This study describes the thermal modeling of a novel algal biofilm photobioreactor aimed at cultivating algae for biofuel production. The thermal model is developed to assess the photobioreactor's thermal profile and evaporative water loss rate for a range of environmental parameters, including ambient air temperature, solar irradiation, relative humidity, and wind speed. First, a week-long simulation of the system has been performed using environmental data for Memphis, TN, on a typical week during the spring, summer, fall, and winter. Then, a sensitivity analysis was performed to assess the effect of each weather parameter on the temperature and evaporative loss rate of the photobioreactor. The range of the daily algae temperature variation was observed to be 12.2 °C, 13.2 °C, 11.7°C, and 8.2°C in the spring, summer, fall, and winter, respectively. Furthermore, without active cooling, the characteristic evaporative water loss from the system is approximately 6.0 L/m~2 day, 7.3 L*m~2 day, 3.4 L*m2 day, and 1.0 L/m~~2 day in the spring, summer,fall, andwinter, respectively.
机译:这项研究描述了旨在培养藻类以生产生物燃料的新型藻类生物膜光生物反应器的热模型。开发热模型的目的是针对一系列环境参数(包括环境空气温度,太阳辐射,相对湿度和风速)评估光生物反应器的热曲线和蒸发失水率。首先,使用田纳西州孟菲斯市的环境数据,在春季,夏季,秋季和冬季的典型一周内,进行了为期一周的系统模拟。然后,进行敏感性分析以评估每个天气参数对光生物反应器的温度和蒸发损失率的影响。在春季,夏季,秋季和冬季,观察到的每日藻类温度变化范围分别为12.2°C,13.2°C,11.7°C和8.2°C。此外,在没有主动冷却的情况下,春季系统的特征性蒸发水损失约为6.0 L / m〜2天,7.3 L * m〜2天,3.4 L * m2天和1.0 L / m ~~ 2天,夏季,秋季和冬季。

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