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相关概念视频

Internal Combustion Engine01:20

Internal Combustion Engine

1.4K
The internal combustion engine is a heat engine that uses the byproducts of combustion as the working fluid instead of using a heat transfer medium to transfer heat. The combustion is done in a way that produces high-pressure combustion products that can be expanded through a turbine or piston to create work. Internal combustion engines can again be categorized into three kinds: (1) spark ignition gasoline engines, most commonly used in automobiles, (2) compression ignition diesel engines that...
1.4K
Heat Engines01:10

Heat Engines

2.9K
A heat engine is a device used to extract heat from a source and then convert it into mechanical work used for various applications. For example, a steam engine on an old-style train can produce the work needed for driving the train.
Whenever we consider heat engines (and associated devices such as refrigerators and heat pumps), we do not use the standard sign convention for heat and work. For convenience, we assume that the symbols Qh, Qc, and W represent only the amounts of heat transferred...
2.9K
Design Example: Automobile Ignition System01:14

Design Example: Automobile Ignition System

261
The automobile's ignition system plays a vital role by ensuring the timely ignition of the fuel-air mixture in each cylinder. This ignition is facilitated by a spark plug, which is composed of two electrodes separated by an air gap. A spark forms across this air gap when a substantial voltage is generated between the electrodes, leading to the ignition of the fuel.
One can generate a large voltage using a car battery of 12 volts with the help of inductors. Inductors are known for opposing...
261
Otto and Diesel Cycle01:27

Otto and Diesel Cycle

1.8K
An Otto engine is a four-stroke engine that uses a mixture of gasoline and air as the working fuel. The fuel is injected into the cylinder, and the piston is moved completely down so that the cylinder is at maximum volume. By moving the piston up, adiabatic compression takes place. The spark plug ignites the gasoline-air mixture, and the burning fuel adds heat to the system at a constant volume. The heated mixture expands adiabatically and gets further cooled by exhausting heat, and this cyclic...
1.8K
Combustion Energy: A Measure of Stability in Alkanes and Cycloalkanes02:14

Combustion Energy: A Measure of Stability in Alkanes and Cycloalkanes

6.4K
The low reactivity in alkanes can be attributed to the non-polar nature of C–C and C–H σ bonds. Alkanes, therefore, were  initially termed as “paraffins,” derived from the Latin words: parum, meaning “too little,” and affinis, meaning “affinity.”
Alkanes undergo combustion in the presence of excess oxygen and high-temperature conditions to give carbon dioxide and water. A combustion reaction is the energy source in natural gas, liquified...
6.4K
Atomic Absorption Spectroscopy: Atomization Methods01:25

Atomic Absorption Spectroscopy: Atomization Methods

589
Atomic Absorption Spectroscopy (AAS) atomizes samples through flame atomization or electrothermal atomization. Flame atomization typically involves a nebulizer and spray chamber assembly to combine the sample with a fuel–oxidant mixture, creating a fine aerosol mist that enters a burner. Typically, the fuel and oxidant are combined in an approximately stoichiometric ratio. However, for atoms that are easily oxidized, a fuel-rich mixture may be more advantageous. Only about 5% of the...
589

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相关实验视频

Updated: Jul 27, 2025

Combustion Characterization and Model Fuel Development for Micro-tubular Flame-assisted Fuel Cells
08:16

Combustion Characterization and Model Fuel Development for Micro-tubular Flame-assisted Fuel Cells

Published on: October 2, 2016

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关于使用新型航空发动机燃烧器进行微波辅助点火的研究

Yunwei Zhang1, Bingbing Zhao1, Liming He1

  • 1Aviation Engineering School, Air Force Engineering University, Xi'an 710038, China.

Sensors (Basel, Switzerland)
|June 10, 2023
PubMed
概括

这项研究优化了用于燃烧器的微波料装置,提高了点火和燃烧性能,同时减少了排放. 这种新的设计可以作为一个腔体共振器,在燃烧过程中改善能量传输和适应性.

科学领域:

  • 工程 工程师 工程师 工程师
  • 等离子体物理学的物理学
  • 燃烧科学 燃烧科学

背景情况:

  • 微波等离子体为点火,燃烧和减排提供了好处.
  • 传统的燃烧器可能无法有效地利用微波能量来产生等离子体.
  • 调整微波能量传递以适应动态燃烧条件至关重要.

研究的目的:

  • 设计和制造用于燃烧器的新型微波料装置.
  • 为了使燃烧器能够作为微波等离子体生成的腔体共振器发挥作用.
  • 提高点火和燃烧性能,减少污染物排放.

主要方法:

  • 使用HFSS软件 (版本:2019 R 3) 来模拟和优化插槽天线和调.
  • 研究了金属尖的几何形状,放电电压和微波点火核/火焰相互作用之间的关系.
  • 进行了对共振特征和微波辅助点火器放电的实验研究.

主要成果:

  • 设计的燃烧器作为一个微波腔共振器,具有可适应的共振频率.
  • 微波能量增强了点火器放电的发展,并增加了放电大小.
  • 该研究成功地分离了微波炉的电场和磁场效应.
关键词:
燃烧器是一个燃烧器.燃烧点燃点燃点燃点燃点燃点燃点燃微波炉微波炉微波炉微波炉微波炉的作用是什么?微波炉微波炉的作用是什么?血等离子体是什么?一个共振器的共振器.

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Last Updated: Jul 27, 2025

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结论:

  • 这种新型的微波养装置有效地在燃烧器内产生微波等离子体.
  • 优化的设计提高了微波能量适应变化的燃烧条件的适应性.
  • 这种方法提高了点火和燃烧效率,并减少了排放.