Innovative Photovoltaic Cooling System

Ryan Bugeja, Luciano Mule’ Stagno
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Abstract

With the ever-increasing adoption of solar energy and the lack of space for PV installations, targeting maximum photovoltaic operational efficiencies has become essential. One of the key challenges faced by PV installations in warm climates is thermal management, which is caused by increasing temperatures due to PV conversion inefficiencies and limited ventilation possibilities in certain installations. Despite prior art, further improvement is still needed to provide a novel system that can offer more efficient and controllable temperature decrease of photovoltaic modules in both land and offshore installations. The present invention, termed IPCoSy, satisfies the aforementioned needs in the art by providing a novel system for cooling a solar panel assembly, including at least one photovoltaic module having a plurality of solar cells generating electrical power and a PV junction box attached to the back of the photovoltaic module. A part of this invention discloses a new type of PV module that is a modification of standard commercial modules. This new PV module incorporates a water chamber at the back of a solar cell assembly to regulate operational temperatures. Another part of this invention presents an after-market cooling system that can be fitted to existing standard PV modules to add the cooling effect. This part of the invention presents solid and flexible water tanks that can be fitted directly into a gap at the back of standard PV modules. Moreover, this invention presents details on parts that distinguish this cooling system from prior art, such as an internal stream spreader to obtain better fluid dynamics and external fittings that allow the PV module to be installed at any tilt angle without jeopardizing the cooling effect. Finally, this invention discloses different application areas of this cooling system, such as residential and industrial water heating, reverse osmosis plants and offshore photovoltaic installations, showcasing the product's versatility, adaptability and large market suitability.

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创新型光伏冷却系统
随着太阳能应用的不断增加以及光伏装置空间的不足,最大限度地提高光伏运行效率已变得至关重要。在温暖的气候条件下,光伏装置面临的主要挑战之一是热管理,这是由光伏转换效率低和某些装置通风能力有限导致的温度升高引起的。尽管已有技术,但仍需进一步改进,以提供一种新型系统,为陆地和海上设施中的光伏组件提供更高效、更可控的温度降低。本发明被称为 IPCoSy,通过提供一种用于冷却太阳能电池板组件的新型系统来满足上述技术需求,该组件包括至少一个光伏模块,该模块具有多个可产生电能的太阳能电池,以及一个连接到光伏模块背面的光伏接线盒。本发明的一部分披露了一种新型光伏模块,它是对标准商用模块的改进。这种新型光伏组件在太阳能电池组件的背面装有一个水室,用于调节工作温度。本发明的另一部分提出了一种售后冷却系统,可安装在现有的标准光伏组件上,以增加冷却效果。本发明的这一部分介绍了可直接安装在标准光伏组件背面缝隙中的固体和柔性水箱。此外,本发明还详细介绍了该冷却系统有别于现有技术的部件,例如可获得更好流体动力学的内部水流扩散器,以及允许光伏组件以任何倾斜角度安装而不影响冷却效果的外部配件。最后,本发明披露了该冷却系统的不同应用领域,如住宅和工业用水加热、反渗透设备和海上光伏装置,展示了该产品的多功能性、适应性和巨大的市场适用性。
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