首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Weather data and analysis of hybrid photovoltaic-wind power generation systems adapted to a seawater greenhouse desalination unit designed for arid coastal countries
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Weather data and analysis of hybrid photovoltaic-wind power generation systems adapted to a seawater greenhouse desalination unit designed for arid coastal countries

机译:气象数据和适用于干旱沿海国家的海水温室海水淡化装置的混合光伏-风力发电系统的分析

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摘要

The integration of renewable resources such as solar and wind energy is becoming increasingly attractive. This is being used widely for substitution of oil-produced energy and will help to minimize atmospheric degradation. The major advantage of a hybrid system is that when solar and wind power production is used together, the reliability of the system is enhanced. In the present investigation, hourly wind speed and solar radiation measurements, made at a meteorological monitoring station in the Arabian Gulf country of Oman, were analyzed to assess the feasibility of using hybrid (wind + solar) energy conversion systems to meet the energy needs to power a seawater greenhouse The examination of the data collected during the operation of the seawater greenhouse confirms that it is technically feasible to take advantage of renewable energy to run the seawater greenhouse. Wind/solar energy can be employed to power the greenhouse to produce freshwater without the back-up support of fossil fuel energy sources. The greenhouse 16 m wide and 60 m long produced 297 L/day of freshwater. In only 8 h (between 09:00 and 17:00 h) the greenhouse produced 98% of the total freshwater. This interval corresponds to the duration of the solar sunning. The aim of our research is to develop the idea of using solar/photovoltaic or wind energy to power the seawater greenhouse.
机译:太阳能和风能等可再生资源的整合变得越来越有吸引力。它被广泛用于替代石油生产的能源,并将有助于最大程度地减少大气退化。混合动力系统的主要优势在于,当同时使用太阳能和风能发电时,系统的可靠性得以提高。在本次调查中,分析了在阿拉伯海湾国家阿曼的气象监测站进行的每小时风速和太阳辐射测量,以评估使用混合(风能+太阳能)能源转换系统来满足能源需求的可行性。为海水温室供电在对海水温室运行过程中收集的数据进行检查后,可以确认利用可再生能源运营海水温室在技术上是可行的。在没有化石燃料能源支持的情况下,可以利用风/太阳能为温室提供动力以生产淡水。 16 m宽,60 m长的温室每天可产生297升淡水。仅8小时(09:00至17:00之间),温室就产生了淡水总量的98%。该间隔对应于太阳晒黑的持续时间。我们研究的目的是发展利用太阳能/光伏或风能为海水温室供电的想法。

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