碳定价和系统可靠性对非洲普及电力供应的途径产生影响
Hamish Beath1,2, Shivika Mittal3,4, Sheridan Few3,5
1Department of Physics, Imperial College London, London, SW7 2AZ, UK. Hamish.Beath16@imperial.ac.uk.
Nature communications
|May 16, 2024
概括
离网光伏系统对于扩大撒哈拉以南非洲地区的电力供应至关重要. 考虑到可靠性和碳定价,大大提高了它们在实现到2030年实现普及的作用.
科学领域:
- 能源政策 能源政策
- 可持续的发展 可持续的发展
- 地理空间分析是什么?
背景情况:
- 离网光伏 (PV) 系统为发展中国家的电力获取提供了潜在的解决方案.
- 以前的分析可能低估了离网光伏的贡献,因为没有考虑可靠性和碳定价.
研究的目的:
- 评估非电网光伏在实现到2030年在撒哈拉以南非洲地区实现全民家庭电力接入方面的作用.
- 将可靠性和碳定价影响纳入最低成本途径分析.
主要方法:
- 对撒哈拉以南非洲进行了高分辨率的地理空间分析.
- 根据不同电力需求水平 (第三层) 确定了成本最低的途径.
- 评估了未满足的需求成本和碳定价的影响.
主要成果:
- 在一级3需求情景下,预计到2030年,24%的新电力供应将通过离网光伏发电.
- 惩罚不可靠性 (0.50美元/千瓦时) 将离网光伏份额提高到41%.
- 使用碳价格 ($80/CO2-eq) 将离网光伏份额提高到38%.
结论:
- 离网光伏在撒哈拉以南非洲的未来电力获取战略中发挥着重要作用.
- 政策干预需要考虑可靠性和碳定价以获得最佳结果.
- 具体国家政策是必要的,因为不同的区域需求和在某些地区更低的干预水平的潜力.
相关概念视频
Distribution Reliability and Automation
107
Distribution reliability in electrical power systems is critical for ensuring an uninterrupted power supply to consumers at minimal cost. According to IEEE Standard Terms, reliability is the probability that a device will function without failure over a specified time period or amount of usage. For electric power distribution, this translates to maintaining continuous power supply and addressing customer concerns over power outages. Several indices, as defined by IEEE Standard 1366-2012, are...
107
Power System Distribution
237
Power system distribution involves delivering electrical energy from power plants to consumers through a network of transmission and distribution systems. The process begins at power plants, where energy from coal, gas, nuclear, water, and wind is converted into electrical energy. These plants use three-phase generators, typically rated between 50 to 1300 MVA, with terminal voltages ranging from a few kV to 20 kV, depending on the size and age of the units.
The transmission system is designed...
The transmission system is designed...
237
Secondary Distribution
84
Secondary distribution systems provide electrical energy at the utilization voltage levels from distribution transformers to customer meters. Typical secondary voltages in the United States include 120/240 V for residential use, 208Y/120 V for residential and commercial use, and 480Y/277 V for industrial and high-rise commercial use.
In residential areas, 120/240 V single-phase, three-wire service is commonly used for lighting, outlets, and large appliances. Urban areas with high-density loads...
In residential areas, 120/240 V single-phase, three-wire service is commonly used for lighting, outlets, and large appliances. Urban areas with high-density loads...
84
Primary Distribution
102
Primary distribution systems deliver electrical power from substations to consumers through various voltage classes, with 15-kV class voltages being predominant among U.S. utilities. Older 2.5- and 5-kV classes are being replaced by 15-kV primaries, while higher 25- to 34.5-kV classes are used in high-density urban areas and rural regions with long feeders. Three-phase, four-wire multigrounded systems are widely employed for balanced power delivery, using the neutral wire as a grounding point.
102
Electrical Power
3.1K
Electric power is the product of current and voltage, represented in units of joules per second, or watts. For example, cars often have one or more auxiliary power outlets with which you can charge a cell phone or other electronic devices. These outlets may be rated at 20 amps and 12 volts, so that the circuit can deliver a maximum power of 240 watts. Consider a 25 Watt bulb and a 60 Watt bulb. The conversion of electrical energy produces heat and light, while the kinetic energy lost by the...
3.1K
Electrical Energy
1.2K
Using electric appliances for a longer period of time consumes more electrical energy and results in a higher electric bill. The energy produced by the transfer of electrons from one point to another is known as electrical energy. If power is delivered at a constant rate, the electrical energy can be defined as the product of power used by the device for a period of time. The energy unit on electric bills is the kilowatt-hour, where one kilowatt-hour is equivalent to 3.6 × 106 joules.
1.2K


