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Measurement of water current field created by paddle wheel aerators in shrimp culture pond

机译:虾养池塘桨轮曝气器产生的水流场测量

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Intensive cultures of shrimps produce more than 10 individuals per square meters with the use of hatchery reared post-larvae and the supply of compounded diets. The paddle wheel aerators are usually installed in the pond to supply oxygen and collect the sludge generated from the excretion of shrimps and the rest of the compounded food. The operation of paddlewheel aerators consume plenty of oil or electricity, therefore the strategy of installation density and arrangement of the paddle wheel aerators is quite important to save the energy and represent the best performance. The strategy is determined empirically, while several surveys were carried out to examine the performance of aeration. The purpose of the present study is to measure the water current field in the shrimp culture pond for obtaining the data to validate the numerical model. The measurement of water current field was carried out in the pond of culturing Penaeidshrimp. The water depth ranges between 0.6 m and 2.3 m depending on the area. Paddle wheel aerators with the power of 1 kW were installed at 8 points from the experience of local workers. Water current velocity was measured at the sampling rate of 16 Hz at every 14 m and 26 m in transverse and longitudinal directions, respectively (totally 44 points), and in several layers every 0.3m in the vertical direction. As a result, a general circulation was created successfully, while the current field just around the aerators was complex. Some small eddies were observed near the several aerators. The bottom stress was estimated by a simple equation and was compared with the distribution of the thickness of the sludge, which was obtained from the interview to local workers. The useful data were obtained to validate the numerical model which will potentially show the efficient operation and arrangement of paddle wheel aerators in any culture pond.
机译:虾的密集培养物每平方米生产超过10人,利用孵化场饲养后幼虫和复合饮食供应。桨叶曝气器通常安装在池塘中以供应氧气,并收集从虾排泄的污泥和剩下的复合食物。桨轮曝气器的操作消耗了大量的石油或电力,因此桨叶曝气器的安装密度和布置策略对于节省能量并表示最佳性能非常重要。策略是在经验上确定的,而进行了几次调查以检查通气的性能。本研究的目的是测量虾培养池中的水流场,以获得数据以验证数值模型。在Penaeidshrimp的池塘中进行了水流场的测量。根据该区域,水深范围为0.6米和2.3米。桨叶曝气机的功率为1 kW,安装在当地工人的经验8点。在横向和纵向的横向和长度方向的每14米和26米处以16Hz的采样率以16Hz的采样率测量水流速度,并且在垂直方向上每0.3m处为几个层。结果,成功地创建了一般循环,而曝气机周围的当前场是复杂的。在几个曝气器附近观察了一些小漩涡。通过简单的方程估计底部应力,并与污泥厚度的分布进行比较,从对本地工人的采访中获得。获得了有用的数据以验证将潜在的数值模型显示出任何文化池塘中的桨叶曝气器的有效操作和布置。

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