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Don't soil your chances with solar energy: Experiments of natural dust accumulation on solar modules and the effect on light transmission.

机译:不要用太阳能来污染您的机会:太阳能组件上自然灰尘堆积以及对光传输的影响的实验。

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摘要

Dust accumulation, or soiling, on solar energy harvesting systems can cause significant losses that reduce the power output of the system, increase pay-back time of the system, and reduce confidence in solar energy overall. Developing a method of estimating soiling losses could greatly improve estimates of solar energy system outputs, greatly improve operation and maintenance of solar systems, and improve siting of solar energy systems. This dissertation aims to develop a soiling model by collecting ambient soiling data as well as other environmental data and fitting a model to these data.;In general a process-level approach is taken to estimating soiling. First a comparison is made between mass of deposited particulates and transmission loss. Transmission loss is the reduction in light that a solar system would see due to soiling, and mass accumulation represents the level of soiling in the system. This experiment is first conducted at two sites in the Front Range of Colorado and then expanded to three additional sites. Second mass accumulation is examined as a function of airborne particulate matter (PM) concentrations, airborne size distributions, and meteorological data. In depth analysis of this process step is done at the first two sites in Colorado, and a more general analysis is done at the three additional sites. This step is identified as less understood step, but with results still allowing for a general soiling model to be developed. Third these two process steps are combined, and spatial variability of these steps are examined. The three additional sites (an additional site in the Front Range of Colorado, a site in Albuquerque New Mexico, and a site in Cocoa Florida) represent a much more spatially and climatically diverse set of locations than the original two sites and provide a much broader sample space in which to develop the combined soiling model. Finally a few additional parameters, precipitation, micro-meteorology, and some sampling artifacts, are cursorily examined. This is to provide a broader context for these results and to help future researchers in understanding the strengths and weaknesses of this dissertation and the results presented within.
机译:太阳能收集系统上的灰尘堆积或弄脏会造成重大损失,从而降低系统的功率输出,增加系统的投资回收时间并降低总体太阳能的信心。开发一种估算污染损失的方法可以大大改善对太阳能系统产量的估算,可以大大改善太阳能系统的运行和维护,并可以改善太阳能系统的位置。本文旨在通过收集环境污染数据以及其他环境数据并为这些数据拟合模型来开发污染模型。通常,采用过程级别的方法来估算污染。首先,比较沉积颗粒的质量和传输损耗。传输损耗是太阳能系统因污染而减少的光通量,质量累积表示系统中的污染程度。该实验首先在科罗拉多州前沿地区的两个地点进行,然后扩展到另外三个地点。根据空气传播的颗粒物(PM)浓度,空气传播的尺寸分布和气象数据,检查第二质量累积。在科罗拉多州的前两个站点中对该过程步骤进行深入分析,而在另外三个站点中进行更一般的分析。该步骤被认为是较难理解的步骤,但是结果仍然允许开发通用的污染模型。第三,将这两个过程步骤组合起来,并检查这些步骤的空间变异性。这三个附加地点(在科罗拉多州前线的一个附加地点,在新墨西哥州阿尔伯克基的一个地点和在可可佛罗里达的一个地点)代表了比原始两个地点更多的空间和气候差异,并且范围更广用于开发组合污染模型的样本空间。最后,还粗略地检查了一些其他参数,包括降水,微气象和一些采样伪像。这将为这些结果提供更广阔的背景,并帮助未来的研究人员了解本论文及其所提供结果的优缺点。

著录项

  • 作者

    Boyle, Liza.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:42

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