首页> 外文会议>ASME international conference on energy sustainability;ES2009 >PARABOLIC SUN TRACKING SOLAR DISTILLATION SYSTEM
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PARABOLIC SUN TRACKING SOLAR DISTILLATION SYSTEM

机译:抛物线形太阳追踪蒸馏系统

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The main aim of the present study is to draw attention to the possibilities and to the measures of appropriate utilization of renewable energy to achieve what is called" water self-sufficient" for arid regions in Jordan. Also to put efforts of increasing the use of renewable energy sources to lower cost of potable water pumping and gives more economical benefits.Another aim of the current research is to utilize the new control algorithm and the developed computer capabilities in the field of sun tracking in order to improve the efficiency of solar distillers. The new tracking method is utilized for water distillation taking advantage of high possible concentration of parabolic trough collector to reach high levels of daily yield per square meter. The present research utilizes the techniques of image processing to catch the core of the sun as the target, also used artificial intelligence techniques to predict the sun position in abnormal conditions (i.e. cloudy, dusty, rainy). The results of sun tracking using image processing found to be accurate and reliable according to the self monitoring of the focus point validated by the solar radiation results. Water distillation yield shows high percentage output of distillate of about 65% of water supplied to distiller. Mechanical design was tested for high ability to withstand the extra loading. It was found that the output yield reached to noticeable levels, because of the use of the parabolic collector that promoted the solar still efficiency.
机译:本研究的主要目的是提请人们注意约旦干旱地区的可能性和适当利用可再生能源的措施,以实现所谓的“自给水”。此外,还要努力增加可再生能源的使用,以降低抽水的成本,并带来更多的经济效益。 当前研究的另一个目的是在太阳跟踪领域中利用新的控制算法和发达的计算机功能,以提高太阳能蒸馏器的效率。新的跟踪方法用于水蒸馏,利用了高浓度的抛物线槽收集器,以达到每平方米高日产量。本研究利用图像处理技术捕获太阳的核心作为目标,还使用人工智能技术预测异常情况下(即多云,多尘,下雨)的太阳位置。根据通过太阳辐射结果验证的对焦点的自我监控,发现使用图像处理进行太阳跟踪的结果是准确可靠的。水蒸馏产率显示出提供给蒸馏器的水的约65%的馏出物的高百分比输出。机械设计经过测试,具有承受额外负载的高能力。人们发现,由于使用了抛物线状集热器,提高了太阳能的静止效率,因此输出产量达到了可观的水平。

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