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An experimental study to evaluate the efficacy of air entrainment holes on the throat of a venturi aeration system

机译:一种试验研究,评价空气夹带孔对文丘里曝气系统喉咙的功效

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Dissolved oxygen (DO) is a vital nutrient for the health of water bodies such as streams, rivers, and ponds, as it is used in respiration and other biological activity of aquatic animals. Natural replenishment of oxygen through photosynthesis in aquatic bodies is insufficient to meet the high requirements for an intensive aquaculture system, which compels farmers to use aeration systems to supplement the natural process of DO accumulation. When the demand for oxygen (KgO(2)/h) is lower, venturi aerators may be more effective than other aerators. The venturi device is an aeration system which is highly efficient in providing an adequate supply of DO, and is flexible in nature and easy to operate. To evaluate the efficacy of air entrainment holes on the throat of a venturi, aeration experiments were conducted for different throat lengths (L-t) of 20, 40, 60, 80 and 100 mm, varying the number of air holes according to throat length while maintaining a constant air hole diameter of 2 mm. Aeration efficiency was found to increase with an increasing number of air holes. The highest oxygen transfer coefficients for throat lengths of 20, 40, 60, 80 and 100 mm were 0.497 h(-1), 0.756 h(-1), 1.045 h(-1), 0.627 h(-1) and 1.072 h(-1), respectively, with the maximum number of air holes (NH). The maximum standard aeration efficiency was found to be 1.25 x 10(-2) kgO(2)/kWh for a throat length of 100 mm with the maximum number of air holes (NH17). Hence, the physical properties of throat length, number of air holes, and distribution of air holes on the throat section were proven to be key factors controlling the performance of the venturi aeration system.
机译:溶解氧(DO)是一种重要的水体健康,如流,河流和池塘,因为它用于水生动物的呼吸和其他生物活性。通过水生体的光合作用对氧气的自然补充不足以满足对密集水产养殖系统的高要求,这将迫使农民使用曝气系统来补充积累的自然过程。当对氧气的需求(KGo(2)/ h)较低时,Venturi曝气器可能比其他曝气器更有效。 Venturi装置是一种曝气系统,在提供足够的供应方面具有高效的曝气系统,并且性质上是灵活的,并且易于操作。为了评估空气夹带孔对文丘里管喉咙的功效,对20,40,60,80和100mm的不同喉部长度(LT)进行曝气实验,根据喉部长度改变空气孔的数量,同时保持恒定的空气孔直径为2毫米。发现曝气效率随着空气孔的增加而增加。喉部长度为20,40,60,80和100mm的最高氧转移系数为0.497 h(-1),0.756小时(-1),1.045 h(-1),0.627 h(-1)和1.072小时(-1)分别具有最大空气孔(NH)。最大标准曝气效率为1.25 x 10(2)kgo(2)/ kWh,喉部长度为100mm,最大空气孔数(NH17)。因此,被证明,喉部孔的喉部长度,空气孔的分布和空气孔的分布的物理性质被证明是控制文丘里曝气系统性能的关键因素。

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