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Simulation and exergy analysis of a small scale seawater desalination/ electricity production prototype powered with renewable energy

机译:用可再生能源驱动的小型海水淡化/电力生产原型的仿真和火用分析

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摘要

The objective of the FP6 Open-Gain project is to develop a new model-based optimal system design approach to economically improve the overall performance, dependability, reliability and availability of co-generating waterelectricity plants powered by renewable energy for remote arid areas using a high level of automation to meet specific cost requirements and to disseminate the new technology in Mediterranean and Middle East/Northern Africa Countries. The design of a small scale prototype in Tunisia for RO desalination and hybrid power generation from conventional (e.g. Diesel GenSet) and renewable energy sources (e.g. wind energy conversion and photovoltaic power generation) will help to gain real experience with the new system concept characterized by flexible design, fast implementation, energy efficiency and low emissions. The challenge of such systems stems from the integrative character for the solutions: Usually only simultaneous water and power production and hybrid utilization of conventional and renewable energy sources make reliable and cost-effective solutions feasible. The integrative character of the engineering approach is illustrated by a case-study concerning a 48 m³/day seawater Reverse osmosis desalination plant on the east Mediterranean coast of Tunisia nearby Burj Cedria with additional power supply to the consumers of the water. The water and power cogeneration process is powered from PV and wind energy conversion including short time battery storage and a backup Diesel generator
机译:FP6开放收益项目的目标是开发一种基于模型的最佳系统设计方法,以经济方式提高由偏高干旱地区使用可再生能源发电的热电联产水电厂的整体性能,可靠性,可靠性和可用性。满足特定成本要求并在地中海和中东/北非国家推广新技术的自动化水平。在突尼斯设计一个小型原型机,用于从常规(例如柴油发电机组)和可再生能源(例如风能转换和光伏发电)进行反渗透海水淡化和混合发电,这将有助于获得具有以下特征的新系统概念的真实经验:灵活的设计,快速的实施,节能和低排放。这种系统的挑战源于解决方案的集成特性:通常,只有同时进行水和电力生产以及常规能源和可再生能源的混合利用才能使可靠且具有成本效益的解决方案切实可行。案例研究说明了该工程方法的综合特征,该案例研究涉及突尼斯东部地中海沿岸Burj Cedria附近的48立方米/天的海水反渗透淡化厂,并为水的用户提供了额外的电力。水电联产过程由光伏和风能转换提供动力,包括短时电池存储和备用柴油发电机

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