可再生能源海水淡化系统的设计与实现

Mohammad Al-Addous, F. Alawneh, Zakariya Dalalah, C. Class, H. Al-Taani
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引用次数: 1

摘要

约旦缺乏足够的可用淡水资源来满足用水需求,这迫使该国寻找新的水源来满足日益增长的淡水需求。本文介绍了一个利用光伏发电系统设计、优化和实现离网海水淡化系统的案例研究。该系统安装在约旦河谷南戈尔的一个农场,那里的电网接入不够可靠,无法保证农场灌溉所需的海水淡化。该研究提供了一个框架,有助于设计类似的试点工厂,在这些工厂,经典的发电预测受到环境条件的极大影响。在Karma镇附近的约旦河谷南部设计、采购并安装了一个标称总功率为10.4千瓦时的离网光伏系统。该系统操作泵送系统以及基于反渗透的脱盐装置。在过去的4年里,测量系统一直在连续收集温度、辐射、电压、电流、水质、压力等相关数据。在本文中,我们将介绍所使用的尺寸确定程序、系统设计,并使用收集的4年运行数据对设计进行评估。有关水质和脱盐水量的数据将同样用于评估系统。论文最后将提出在中东和北非(MENA)地区不同地区调整系统设计的建议。
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Design and Implementation of Water Desalination System (RO) Using Renewable Energy Source
The shortage of sufficient available fresh water resources in Jordan to meet water needs forces the nation to look for new water supply sources also to meet the increasing demand for fresh water. In this manuscript, a case study for designing, optimizing and implementing an off-grid water desalination system using photovoltaic (PV) power generation system is introduced. The system is installed on a farm in Southern Ghore of Jordan valley where the access to the grid is not reliable enough to guarantee the desalination of the amount of water for the farm’s irrigation needs. The study offers a framework to aid in designing similar pilot plants where the classic power generation prediction is greatly affected by the environmental conditions. An off-grid PV system with a total nominal power of 10.4 kWp was designed, procured and installed in the southern part of Jordan Valley near Karma town. The system operates the pumping system as well as the reverse osmosis based desalination unit. A measurement system has been collection relevant data like temperature, radiation, voltage, current, water quality, pressure, etc. continuously for the last 4 years. In this paper we will present the sizing procedure used, the system design and evaluate the design using the collected data of the run-time of 4 years. Data about the water quality and amount of desalinated water will equally be used to evaluate the system. The paper will end with recommendations to adapt the system design in different part of the Middle East and North Africa (MENA) region.
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