印度双面光伏系统的资源潜力测绘
1Department of Mechanical Engineering, Faculty of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu 603203, India.
iScience
|October 13, 2023
概括
双面光伏 (PV) 技术在印度提供了显著的能源收益,潜在收益范围为2.5%至22%. 优化的资源地图显示,双面光伏的表现优于单面光伏,支持印度.
科学领域:
- 可再生能源可再生能源是可再生能源.
- 光伏技术 光伏技术
- 可持续发展 可持续发展 可持续发展
背景情况:
- 双面光伏 (PV) 技术对于印度的可持续发展目标和气候承诺至关重要.
- 印度双面光伏市场的增长受到缺乏意识和综合数据 (如潜在地图) 的阻碍.
- 需要优化资源潜力图来突出双面光伏技术的优势.
研究的目的:
- 在印度开发双面光伏的优化资源潜力地图.
- 为了评估与单面PV相比,双面PV的增益和性能.
- 调查地面白度和安装高度对双面光伏性能的影响.
主要方法:
- 使用经过实验验证的基于视图因子的双面光伏模型.
- 为印度各地的双面光伏产生的优化资源潜力地图.
- 分析年度和季节性功率输出,考虑地面白度和安装高度.
主要成果:
- 在印度不同地区,双面的年平均增长率从2.5%到22%不等.
- 与单面光伏相比,双面光伏显示出更高的年度和季节性发电量.
- 地面白度和安装高度被确定为影响双面收益的重要因素.
结论:
- 双面光伏技术在印度增强太阳能发电的巨大潜力.
- 开发的资源地图可以帮助确定最佳部署地点,并最大限度地发挥双面光伏效益.
- 双面光伏系统是印度市场对单面系统的可行和有利的替代方案.
更多相关视频
06:49In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation
Published on: March 2, 2021
6.3K
08:59Concurrent Quantitative Conductivity and Mechanical Properties Measurements of Organic Photovoltaic Materials using AFM
Published on: January 23, 2013
11.8K
相关概念视频
Maximum Power Flow and Line Loadability
120
The maximum power flow for lossy transmission lines is derived using ABCD parameters in phasor form. These parameters create a matrix relationship between the sending-end and receiving-end voltages and currents, allowing the determination of the receiving-end current. This relationship facilitates calculating the complex power delivered to the receiving end, from which real and reactive power components are derived.
120
P-N junction
547
A p-n junction is formed when p-type and n-type semiconductor materials are joined together. At the interface of the p-n junction, holes from the p-side and electrons from the n-side begin to diffuse into the opposite sides due to the concentration gradient. This diffusion of carriers leads to a region around the junction where there are no free charge carriers, known as the depletion region. The charge density within the depletion region for the n-side and p-side can be described by the...
547
Induced Electric Fields: Applications
1.7K
An important distinction exists between the electric field induced by a changing magnetic field and the electrostatic field produced by a fixed charge distribution. Specifically, the induced electric field is nonconservative because it does not work in moving a charge over a closed path. In contrast, the electrostatic field is conservative and does no net work over a closed path. Hence, electric potential can be associated with the electrostatic field but not the induced field. The following...
1.7K
Maximum Power Transfer
265
Numerous practical applications within engineering disciplines, such as telecommunications, necessitate optimizing power delivery to a connected load. This pursuit, however, entails inherent internal losses, which can either equal or exceed the power supplied to the load. The Thevenin equivalent circuit is helpful in finding the maximum power a linear circuit can deliver to a load. It is assumed in this context that the load resistance can be adjusted.
By substituting the entire circuit with...
By substituting the entire circuit with...
265
Power Factor Correction
185
The power transmission to a factory involves the transfer of apparent power, a combination of active and reactive power. The power factor measures how effectively electrical power is converted into useful work output. The ratio of the real power (KW) that does the work to the apparent power (KVA) supplied to the circuit.
185
Energy Line and Hydraulic Gradient Line
1.1K
Based on Bernoulli's equation, the energy line (EL) and hydraulic grade line (HGL) provide graphical representations of energy distribution in a fluid flow system. For steady, incompressible, inviscid flows, Bernoulli's equation is expressed as:
1.1K
