风中的灰尘:太阳能设备的污染:是否有一个圣杯解决方案?(会议)

L. Kazmerski, Suellen C. S. Costa, Marcelo Machado, A. Diniz
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引用次数: 2

摘要

污染是指微粒物质(大小为人类头发直径的1/10)在太阳能集热器暴露表面上的沉降,是太阳能系统性能、可靠性、维护和成本日益受到关注的领域。在光伏(PV)的情况下,入射光子相互作用的第一表面条件对于确保最大可能的光到达转换设备至关重要。本文首先回顾了七十多年来对这一问题的研究,强调了研究的动机和里程碑;研究人员和进展。目前不断增长的地面太阳能市场引起了人们对污染和灰尘问题的新的关注。这是因为,具有讽刺意味的是,世界上许多太阳能资源丰富的地区的新市场,同时也是尘土最丰富、最容易污染的地区。本文继续概述了当前研究工作的现状,以了解基本的污染机制,与光伏技术方法的关系,问题严重程度的地理差异(突出显示巴西,印度和中东和北非地区),粉尘物理和化学-所有这些都与当前和未来的缓解方法有关。其中包括一些基本的微尺度到纳米尺度的检查,检查单个灰尘颗粒如何粘附在模块玻璃表面,以及颗粒在特定环境条件下如何相互粘附。这些观察结果用于显示基础科学如何导致这些污染问题的宏观工程解决方案。本次演讲旨在概述污染领域,并强调一些当前和未来的研究方向,推测防止太阳能表演的短期方法,并推测一些可能导致最终解决方案的“圣杯”方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dust in the wind: Soiling of solar devices : Is there a Holy Grail solution? (Conference Presentation)
Soiling, the sedimentation of particulate matter (on the size scale of 1/10 the diameter of a human hair) on the exposed surfaces of solar collectors, is a growing area of concern for solar-system performance, reliability, maintenance, and cost. In the case of photovoltaics (PV), the condition of this first-surface of interaction of the incident photons is critical for ensuring that the maximum-possible light reaches the conversion devices. This paper begins with a more than seven-decade historical look at the research invested into this problem, highlighting the motivation and milestones; the researchers and the progress. The current growing terrestrial markets for solar have brought a new focus on soiling and dust issues. That is because many of these new markets in the solar-rich geographic regions of our world are ironically also in the most dust-rich and soiling-prone ones as well. This paper continues to provide an overview of the status of current research efforts toward understanding the basic soiling mechanisms, the relationships to the PV technology approaches, the geographical differences (highlighting Brasil, India, and the MENA region) in the severity of the problem, the dust physics and chemistry—all relating to the current and future mitigation approaches. Included are some fundamental microscale through nanoscale examinations at how individual dust particles adhere to module glass surfaces—as well as how the particles might stick to each other under certain environmental conditions. These observations are used to show how fundamental science may lead to the macroscale engineering solutions of these soiling problems. This presentation is designed to both overview the soiling area and highlight some of the current and future research directions, speculate on short-term approaches preventing solar showstoppers, and speculate on some “holy-grail” schemes that might lead to the final solutions.
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