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相关概念视频

Electrical Power01:07

Electrical Power

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...
Generation of Three-Phase Voltage01:21

Generation of Three-Phase Voltage

A three-phase AC generator has a rotor with a rotating magnet placed within the stator mounted with the stationary three-phase winding to generate three-phase voltages via mutual induction. These windings are evenly distributed around the inner circumference of the stator and are arranged 120 electrical degrees apart. Three-phase stator windings consist of three separate coils or groups of coils, known as phases, each connected in Y (star) configuration or Delta configuration.
As the rotor...
Power System Distribution01:25

Power System Distribution

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...
Wind Turbine Machine Models01:24

Wind Turbine Machine Models

In the growing field of wind energy, incorporating wind turbine models into transient stability analysis is essential. Induction and synchronous machines are the primary models used, with induction machines being prevalent due to their simplicity and reliability.
Induction machines interact through the rotating magnetic field generated by the stator and the rotor. The key parameter is slip, which is the difference between synchronous speed and rotor speed relative to synchronous speed. Slip is...
Generator Voltage Control01:21

Generator Voltage Control

Generator voltage control is crucial for maintaining the stable operation of synchronous generators and wind turbines. In older models, a DC generator driven by the rotor delivers DC power to the rotor's field winding, and the power is transferred through slip rings and brushes. In the latest models, static or brushless exciters are used. Static exciters rectify AC power from the generator terminals and then transfer the DC power directly to the rotor. Brushless exciters, on the other hand, use...
Turbine-Governor Control01:17

Turbine-Governor Control

Turbine-governor control is crucial for maintaining power system stability by balancing turbine mechanical power output with electrical load demand. This mechanism ensures that generator frequency and rotor speed are within acceptable limits during load variations. Turbine-generator units store kinetic energy due to their rotating masses; this energy is released to meet the load requirement when the load increases. The electrical torque of turbines rises to meet the demand, whereas the...

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相关实验视频

Updated: Jun 22, 2026

Fabrication of High Contrast Gratings for the Spectrum Splitting Dispersive Element in a Concentrated Photovoltaic System
12:08

Fabrication of High Contrast Gratings for the Spectrum Splitting Dispersive Element in a Concentrated Photovoltaic System

Published on: July 18, 2015

太阳能光伏发电系统:一个电力公用事业的研发前景

E A Demeo, R W Taylor

    Science (New York, N.Y.)
    |April 20, 1984
    PubMed
    概括

    推进太阳能光伏技术对于未来的电力公用事业来说至关重要. 关键电池技术的目标是15-25%的效率,平衡成本和寿命,以便广泛采用.

    科学领域:

    • 可再生能源可再生能源是可再生能源.
    • 材料科学 材料科学 材料科学
    • 电气工程 电气工程

    背景情况:

    • 太阳能光伏技术是一个快速增长的领域,具有大量发电的巨大潜力.
    • 未来10-20年对于太阳能发电的发展和集成到公用事业网络来说至关重要.

    研究的目的:

    • 评估实现光伏技术目标太阳能转换效率的可行性.
    • 确定有前途的电池技术,能够满足公用事业规模的电力需求.
    • 概述光伏技术进步的挑战和机遇.

    主要方法:

    • 分析当前的光伏电池技术及其性能指标.
    • 预测平板模块 (15%) 和集中光伏 (25%) 的效率目标.
    • 对公用事业规模部署的成本效益和运营寿命的评估.

    主要成果:

    • 三种不同的光伏电池技术显示出实现目标效率的巨大潜力.
    • 这些技术旨在满足电力公用事业的成本和寿命要求.
    • 目前的系统可以用来建立用户信心和扩大市场存在.

    结论:

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    Fabrication of High Contrast Gratings for the Spectrum Splitting Dispersive Element in a Concentrated Photovoltaic System
    12:08

    Fabrication of High Contrast Gratings for the Spectrum Splitting Dispersive Element in a Concentrated Photovoltaic System

    Published on: July 18, 2015

    Generation of Dynamical Environmental Conditions using a High-Throughput Microfluidic Device
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    Published on: April 17, 2021

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    Membraneless Hydrogen Peroxide Fuel Cells as a Promising Clean Energy Source

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  • 光伏技术即将成为电力公用事业的主要能源.
  • 持续的研究和开发是必要的,以推动太阳能电池的效率达到其物理极限.
  • 市场扩张和用户信心是成功广泛采用太阳能系统的关键.