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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Comparing the energy efficiency of different high rate algal raceway pond designs using computational fluid dynamics
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Comparing the energy efficiency of different high rate algal raceway pond designs using computational fluid dynamics

机译:使用计算流体动力学比较不同大速率藻类轨道池塘设计的能效

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High Rate Algal Ponds with long, shallow, looped channels and powered by paddlewheels have been used since the late 1970s for growing algae to produce nutraceuticals and to remediate wastewater. These high rate or raceway ponds are also being applied to other fields such as CO2 capture and biodiesel production, where there is an ongoing effort to find ways of minimizing operating and capital costs. One approach for minimizing costs is to improve the energy efficiency of raceway ponds as this would lower operating costs and allow the construction of larger ponds, which should also lower capital costs. A major component of energy loss in a raceway pond is the energy required to circulate the fluid around the raceway, particularly at the hairpin bends. In order to design a low-energy consumption bend for a raceway pond, a computational fluid dynamics (CFD) code was used to model different raceway bend configurations. These simulations assisted in the development of a novel bend design that can reduce the energy loss at a bend by around 87% relative to the energy consumed at a conventional bend. This new design can also remove or reduce the incidence of stagnation regions within the flow. Such a development should, potentially, improve the productivity of algae in raceway ponds.
机译:自20世纪70年代后期以20世纪70年代末以来,高速差距,长,环状通道和由桨轮供电的高速藻类池塘已经用于生长藻类,以生产营养保健品并修复废水。这些高速或滚道池塘也适用于其他领域,如CO2捕获和生物柴油生产,在那里有持续努力寻找最小化运营和资本成本的方法。最小化成本的一种方法是提高滚道池塘的能量效率,因为这将降低运营成本并允许建造较大的池塘,这也应该降低资本成本。滚道池塘中的能量损失的主要成分是循环滚道周围的流体所需的能量,特别是在发夹弯曲。为了设计滚道池的低能量消耗弯曲,使用计算流体动力学(CFD)代码来模拟不同的滚道弯曲配置。这些模拟辅助开发新颖的弯曲设计,可以在传统弯曲处消耗的能量降低弯曲的能量损失约87%。这种新设计还可以去除或减少流动内停滞区域的发生率。这种发展应该是可能的,可以提高血液池塘中藻类的生产率。

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