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相关概念视频

Energy Losses in Transformers01:21

Energy Losses in Transformers

818
In an ideal transformer, it is assumed that there are no energy losses, and, hence, all the power at the primary winding is transferred to the secondary winding. However, in reality,  the transformers always have some energy losses, and, hence, the output power obtained at the secondary winding is less than the input power at the primary winding due to energy losses.
There are four main reasons for energy losses in transformers.
The first cause can be  the high resistance of the...
818
Differential Relays01:20

Differential Relays

94
Differential relays are used to protect generators, buses, and transformers by comparing electrical quantities at different points. When a fault occurs, the difference in current between the two points triggers the relay to operate, opening the circuit breaker. Under normal conditions, the current entering (i1) and leaving (i2) a generator are equal. When a fault occurs, however, these currents become unequal, and the difference current flows in the relay operating coil, causing the relay to...
94
Distribution Reliability and Automation01:25

Distribution Reliability and Automation

95
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...
95
Secondary Distribution01:25

Secondary Distribution

75
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...
75
Energy Budgets00:51

Energy Budgets

9.1K
Organisms must balance energy intake with the energy required for growth, maintenance and reproduction. These trade-offs result in a variety of survivorship and reproductive strategies, including semelparity and iteroparity. Semelparous species, like annual plants, have only one reproductive episode in their lifetimes and consequently have short lifespans. Iteroparous species, by contrast, have many reproductive events during their lifetimes but have relatively few offspring. These two...
9.1K
Reclosers and Fuses01:26

Reclosers and Fuses

78
Automatic circuit reclosers enhance the protection of distribution circuits by interrupting and auto-reclosing an AC circuit according to a preset sequence. They effectively manage temporary faults on overhead distribution lines, often caused by tree limbs or wildlife, by briefly disrupting service to improve overall reliability. However, contact with reclosers or energized broken conductors on the ground can pose serious hazards.
A comprehensive protection scheme for radial distribution...
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相关实验视频

Updated: May 21, 2025

Author Spotlight: Simulation and Analysis of the Temperature Rise of Ring Main Unit Equipment
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通过能源多样化减轻能源风险 能源多样化减轻能源风险

Arusha Cooray1, Muhammad Shahbaz2, Bekhzod Kuziboev3

  • 1College of Business, Law and Governance, James Cook University, Townsville, Australia.

Journal of environmental management
|March 18, 2025
PubMed
概括

能源多样性显著降低了能源风险,特别是在发达经济体. 有效的治理和支出也会降低风险,而人口密度会增加风险.

关键词:
能源多样性 能源多样性能源风险 能源风险 能源风险非线性是非线性的.

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Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway
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Coupling Carbon Capture from a Power Plant with Semi-automated Open Raceway Ponds for Microalgae Cultivation
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相关实验视频

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Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway
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科学领域:

  • 能源经济学 能源经济学
  • 环境政策 环境政策
  • 计量经济学 计量经济学

背景情况:

  • 能源风险对全球经济稳定构成重大挑战.
  • 了解减轻能源风险的因素对于可持续发展至关重要.
  • 能源多样性越来越被认为是一种潜在的降低风险的战略.

研究的目的:

  • 从2000年到2018年,评估能源多样性对64个国家的能源风险的影响.
  • 研究经济发展,治理和人口密度在能源风险中的作用.
  • 确定能源多样化战略的条件有效性.

主要方法:

  • 面板值回归的回归方法
  • 量子回归的时刻方法 (MMQR)
  • 部分线性功能系数 (PLFC) 面板模型
  • 仪器变量 (IV) 估计估计

主要成果:

  • 能源多样性大大降低了能源风险.
  • 能源多样化的有效性取决于一个国家的经济发展.
  • 有效的治理和政府支出与降低能源风险有关.
  • 人口密度增加与更高的能源风险相关.

结论:

  • 能源多元化是减轻能源风险的关键策略,特别是在经济发达国家.
  • 专注于治理和公共支出的政策干预可以提高能源安全.
  • 人口密度是一个挑战,需要谨慎管理能源风险.