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首页> 外文期刊>Applied Engineering in Agriculture >ENERGY PRODUCTIVITY OF THE HIGH VELOCITY ALGAE RACEWAY INTEGRATED DESIGN (ARID-HV)
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ENERGY PRODUCTIVITY OF THE HIGH VELOCITY ALGAE RACEWAY INTEGRATED DESIGN (ARID-HV)

机译:高速藻类综合设计(ARID-HV)的能源生产率

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摘要

The original Algae Raceway Integrated Design (ARID) raceway was an effective method to increase algae culture temperature in open raceways. However, the energy input was high and flow mixing was poor. Thus, the High Velocity Algae Raceway Integrated Design (ARID-HV) raceway was developed to reduce energy input requirements and improve flow mixing in a serpentine flow path. A prototype ARID-HV system was installed in Tucson, Arizona. Based on algae growth simulation and hydraulic analysis, an optimal ARID-HV raceway was designed, and the electrical energy input requirement (kWh hd(-1) d(-1)) was calculated. An algae growth model was used to compare the productivity of ARID-HV and conventional raceways. The model uses a pond surface energy balance to calculate water temperature as a function of environmental parameters. Algae growth and biomass loss are calculated based on rate constants during day and night, respectively. A 10 year simulation of DOE strain 1412 (Chlorella sorokiniana) showed that the ARID-HV raceway had significantly higher production than a conventional raceway for all months of the year in Tucson, Arizona. It should be noted that this difference is species and climate specific and is not observed in other climates and with Other algae species. The algae growth model results and electrical energy input evaluation were used to compare the energy productivity (algae production rate/energy input) of the ARID-HV and conventional raceways for Chlorella sorokiniana in Tucson, Arizona. The energy productivity of the ARID-HV raceway was significantly greater than the energy productivity of a conventional raceway for all months of the year.
机译:原始的藻类赛道集成设计(ARID)赛道是提高开放赛道中藻类培养温度的有效方法。然而,能量输入高并且流混合差。因此,开发了高速藻类水道综合设计(ARID-HV)水道,以减少能量输入需求并改善蜿蜒流路中的水流混合。原型ARID-HV系统安装在亚利桑那州的图森。基于藻类生长模拟和水力分析,设计了最佳的ARID-HV滚道,并计算了电能输入要求(kWh hd(-1)d(-1))。藻类生长模型用于比较ARID-HV和常规水道的生产率。该模型使用池塘表面能平衡来计算水温与环境参数的关系。藻类生长和生物量损失分别根据白天和黑夜的速率常数进行计算。对DOE菌株1412(小球藻)的10年模拟表明,在亚利桑那州图森市,全年所有月份的ARID-HV滚道的产量均显着高于常规滚道。应当指出的是,这种差异是特定于物种和气候的,在其他气候条件下以及与其他藻类物种未观察到。藻类生长模型结果和电能输入评估被用来比较ARID-HV和亚利桑那州图森小球藻的常规水道的能量生产率(藻类产生率/能量输入)。在一年中的所有月份中,ARID-HV滚道的能量生产率都大大高于传统滚道的能量生产率。

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