A ray tracer model for analysis of solar concentrating systems

IF 0.6 4区 工程技术 Q4 ENERGY & FUELS Journal of Energy in Southern Africa Pub Date : 2019-03-08 DOI:10.17159/2413-3051/2019/V30I1A5267
Karidewa Nyeinga, D. Okello, O. Nydal
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引用次数: 5

Abstract

This study describes a 3D ray tracer model for analysis of a small-scale solar concentrating system where thermal heat is collected for cooking purposes. Emitted sun rays were traced from the source through all reflections until they intercepted with the receiver or were lost. The algorithm of the ray tracer and its implementation in MATLAB is clearly described. The ray tracer was programmed to contribute to the development of small-scale concentrating solar energy systems with integrated heat storage units. The ray tracer was demonstrated for selected cases where continuous reflecting surfaces and flat mirror-tiled surfaces were compared. Off-focus sensitivity analysis was shown and this could provide guidelines for the required solar tracking accuracy. The flux distribution on the absorber was analysed and found to be concentrated on a small area on the target for continuous reflecting surfaces and having high intensities. However, for reflectors with mirror tiles, an elongated image was formed centred on the focal point with low intensities. Small misalignment of the reflector in the order 0.2° had minimal impact on the interception ratio, but any further increase in the tracking errors caused a sudden drop in the interception ratio to zero. Results showed that there is close agreement in flux distribution and the tracking error impact on interception ratio, when compared with the literature. This model could be a useful tool when designing the reflection and absorption components of solar concentrators for complex systems with several components in a non-symmetric 3D arrangement.
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用于分析太阳能聚光系统的射线追踪模型
本研究描述了一种用于分析小型太阳能聚光系统的三维射线追踪模型,该系统将热能收集用于烹饪目的。发射的太阳光线从光源经过所有的反射被追踪,直到它们被接收器截获或丢失。详细介绍了光线追踪器的算法及其在MATLAB中的实现。射线追踪器的设计目的是促进小型集中太阳能系统的发展,该系统具有综合蓄热装置。射线追踪器演示了选定的情况下,连续反射表面和平面镜子瓷砖表面进行比较。离焦灵敏度分析表明,这可以为所需的太阳跟踪精度提供指导。对吸收体上的通量分布进行了分析,发现对于连续反射面,吸收体上的通量集中在目标上的一个小区域,并且具有高强度。然而,对于带有镜面瓷砖的反射器,以低强度的焦点为中心形成拉长的图像。反射镜0.2°量级的小偏差对拦截比的影响很小,但跟踪误差的任何进一步增加都会导致拦截比突然降至零。结果表明,与文献相比,在通量分布和跟踪误差对拦截率的影响方面有很好的一致性。该模型可为设计具有非对称三维排列的多个组件的复杂系统的太阳能聚光器的反射和吸收组件提供有用的工具。
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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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