设计和开发一种低成本系统,利用太阳能聚光器将太阳能转化为电能,供南非家庭使用

IF 0.6 4区 工程技术 Q4 ENERGY & FUELS
L. Snyman, Glen Maeko
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引用次数: 0

摘要

南非由于其在南半球的特定纬度位置,暴露在高水平的太阳辐照下。黑色热吸收器对太阳入射辐射有很高的吸收度,而商用光伏技术只转换了太阳光谱中可用能量的10%左右。在本文中,低成本的Peltier转换电池,通常用于冷却目的,并且在南非的供应商店免费提供,被确定为适合将热能转换为电能的转换电池。随后设计和开发了两个热电能量转换系统的原型。特别是,开发了先进的脉冲模式直流到直流转换技术,一种特殊的电子控制系统,可以从电池中提取大量的电能,并将这些能量存储在标准的蓄电池中。研制了输出功率为3w和30w的连续转换容量系统。实现了每个电池高达2w容量的功率转换。该系统没有使用可移动部件,系统的寿命预计至少为20年。对系统进行了成本和可行性分析,并将结果与现有的太阳能光伏能源转换系统进行了比较。将容量为30w的系统与黑体和反射板吸收系统相结合,发现成本结构仅为0.8 ZAR / kWh,而光伏和太阳能间歇井组合的衍生成本为3 ZAR / kWh,计算期限为10年。所开发的技术适合纳入南非家庭和非洲农村的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and development of a low-cost system to convert solar thermal energy into electricity for households in South Africa using solar concentrators
South Africa is, due its specific latitude location in the southern hemisphere, exposed to high solar irradiation levels. Black thermal absorbers have a high absorbance for solar incident radiation, while commercial photovoltaic technology only converts about 10% of energy available in the solar spectrum. In this article, low-cost Peltier conversion cells, that are normally used for cooling purposes, and that are freely available in supply stores in South Africa, were identified as suitable conversion cells for converting thermal energy into electricity. Two prototypes of thermal-to-electricity energy conversion systems were subsequently designed and developed. Particularly, advanced pulse mode DC- to- DC conversion technology, a special electronic control system, was developed, that could extract high amounts of electrical energy from the cells and could store the energy in standard storage batteries. A 3 W and a 30 W output continuous conversion capacity system were developed. A power conversion of up to 2 W capacity per individual cell was achieved. The systems used no movable parts, and the lifespan of the systems is projected to be at least twenty years. Cost and viability analyses of the systems were performed and the results were compared to existing solar photovoltaic energy conversion systems. Combining the 30 W capacity system with a black body and reflector plate absorber system revealed a cost structure of only ZAR 0.8 per kWh, as compared with a derived ZAR 3 per kWh for a combined photovoltaic and solar geyser combination, as calculated for a ten-year term. The technology as developed is suitable to be incorporated in South African households and rural Africa applications.
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来源期刊
CiteScore
3.00
自引率
0.00%
发文量
16
审稿时长
6 months
期刊介绍: The journal has a regional focus on southern Africa. Manuscripts that are accepted for consideration to publish in the journal must address energy issues in southern Africa or have a clear component relevant to southern Africa, including research that was set-up or designed in the region. The southern African region is considered to be constituted by the following fifteen (15) countries: Angola, Botswana, Democratic Republic of Congo, Lesotho, Malawi, Madagascar, Mauritius, Mozambique, Namibia, Seychelles, South Africa, Swaziland, Tanzania, Zambia and Zimbabwe. Within this broad field of energy research, topics of particular interest include energy efficiency, modelling, renewable energy, poverty, sustainable development, climate change mitigation, energy security, energy policy, energy governance, markets, technology and innovation.
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