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首页> 外文期刊>Journal of solar energy engineering >Performance Analysis of a Floriculture Greenhouse Powered by Integrated Solar Photovoltaic Fuel Cell System
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Performance Analysis of a Floriculture Greenhouse Powered by Integrated Solar Photovoltaic Fuel Cell System

机译:集成太阳能光伏燃料电池系统驱动的花卉温室的性能分析

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摘要

In this paper, the performance analysis of a floriculture greenhouse having a fan-pad ventilation system is presented. The greenhouse is powered by integrated solar photovoltaic-electrolyser-fuel cell system. Electrical energy is generated in an array of roof mounted solar photovoltaic modules and energy back up is provided through a combination of polymer electrolyte membrane (PEM) electrolyser and fuel cell system. Excess energy, after meeting the requirements of greenhouse during peak sunshine hours, is supplied to an electrolyser bank to generate hydrogen gas, which is consumed by PEM fuel cell stacks to support the power requirement during the energy deficit hours. The performance of greenhouse and its power system are analyzed for representative days of different seasons of a climatic cycle. The study shows that temperature inside the greenhouse can be maintained within permissible limits for cultivation of target flowers like varieties of rose using fan-pad ventilation. From the performance analysis of power system, it is observed that there is net accumulation of hydrogen gas for representative days of all seasons of a climatic cycle, the daylong cumulative gas generation being maximum in the month of December. The study reinforces the viability of a standalone, grid-independent greenhouse powered through solar energy.
机译:在本文中,介绍了具有扇形通风系统的花卉温室的性能分析。温室由集成的太阳能光伏-电解-燃料电池系统供电。在屋顶安装的太阳能光伏模块的阵列中产生电能,并且通过聚合物电解质膜(PEM)电解槽和燃料电池系统的组合来提供备用能量。在高峰日照时间满足温室要求后,多余的能量将被提供给电解槽,以产生氢气,氢气被PEM燃料电池堆消耗,以在能量不足时满足电力需求。针对气候周期不同季节的代表性天数,分析了温室及其动力系统的性能。研究表明,通过扇形通风可以将温室内的温度保持在允许的范围内,以栽培目标花,如玫瑰品种。从电力系统的性能分析中可以看出,在一个气候周期的所有季节中,代表天都有氢气的净积累,而在12月份,一天的累积天然气产生量最大。该研究增强了通过太阳能供电的独立,独立于电网的温室的生存能力。

著录项

  • 来源
    《Journal of solar energy engineering》 |2011年第4期|p.041001.1-041001.7|共7页
  • 作者

    A. Ganguly; S. Ghosh;

  • 作者单位

    Department of Mechanical Engineering,Bengal Engineering and Science University,Shibpur, Howrah-711103, West Bengal, India;

    Department of Mechanical Engineering,Bengal Engineering and Science University,Shibpur, Howrah-711103, West Bengal, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    greenhouse; cooling; solar; photovoltaic; hydrogen;

    机译:温室;冷却;太阳光伏氢;

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