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相关概念视频

Flame Photometry: Overview01:02

Flame Photometry: Overview

612
Flame photometry, also known as flame emission spectrometry, is a technique used for the qualitative and quantitative analysis of elements present in a sample using a flame as the source of excitation energy. The concept of flame photometry was realized in the early 1860s by Kirchhoff and Bunsen, who discovered that specific elements emit characteristic radiation when excited in flames. The first instrument developed for this purpose was used to measure sodium (Na) in plant ash using a Bunsen...
612
Control Systems: Applications01:25

Control Systems: Applications

620
Electrical engineering plays a pivotal role in our daily lives, with control systems at the heart of many applications, from home appliances to sophisticated space shuttles. Control systems manage and regulate the behavior of devices and processes, ensuring they function safely, correctly, and efficiently.
In modern vehicles, control systems manage various functions to enhance performance and safety. The steering wheel and accelerator are primary inputs in a car's control system. The...
620
PID Controller01:19

PID Controller

120
Proportional-Integral-Derivative (PID) controllers are widely used in various control systems to enhance stability and performance. In a thermostat, it adjusts heating or cooling based on the temperature difference between the actual and desired levels. They are often used in automotive speed systems, effectively managing sudden speed changes while maintaining a constant speed under varying conditions. On the other hand, PI controllers, commonly employed in voltage regulation, enhance stability...
120
Controller Configurations01:22

Controller Configurations

101
Controller configurations are crucial in a car's cruise control system because they manage speed over time to maintain a consistent pace regardless of road conditions, thereby meeting design goals. In traditional control systems, fixed-configuration design involves predetermined controller placement. System performance modifications are known as compensation.
Control-system compensation involves various configurations, most commonly series or cascade compensation, in which the controller...
101
Turbine-Governor Control01:17

Turbine-Governor Control

236
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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Control Systems01:10

Control Systems

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Control systems are everywhere in contemporary society, influencing diverse applications from aerospace to automated manufacturing. These systems can be found naturally within biological processes, such as blood sugar regulation and heart rate adjustment in response to stress, as well as in man-made systems like elevators and automated vehicles. A control system is essentially a network of subsystems and processes that collaboratively convert specific inputs into desired outputs.
At the heart...
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相关实验视频

Updated: Jul 9, 2025

Flame Experiments at the Advanced Light Source: New Insights into Soot Formation Processes
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控制装置用于改善旋转火焰稳定性的控制装置.

Liam Krebbers, Devon Hawley, Sina Kheirkhah

    The Review of scientific instruments
    |December 7, 2023
    PubMed
    概括

    开发了一个主动控制系统,以稳定不稳定的旋转流动的预混合火焰. 调整旋转的角度可以有效控制火焰的形状和稳定性,为燃气轮机燃烧器提供工具.

    科学领域:

    • 燃烧科学和流动力学.
    • 空气动力学和流体力学.
    • 控制系统工程 控制系统工程.

    背景情况:

    • 旋转乱的预混合火焰容易发生不稳定,这给高效的燃烧带来了挑战.
    • 稳定这些火焰对于诸如燃气轮机燃烧器等应用至关重要.
    • 现有的方法可能缺乏动态火焰稳定性的主动控制.

    研究的目的:

    • 开发和测试一个主动控制的旋转系统,以提高不稳定的旋转流动预混合火焰的稳定性.
    • 为了研究动态旋翼角调整对火焰结构和稳定性的影响.
    • 为增强燃气轮机燃烧器中火焰稳定提供强大的工具.

    主要方法:

    • 使用电气硬件和控制软件实现主动控制的旋转器.
    • 使用立体粒子图像速度计 (PIV) 来测量旋转数和分析火焰稳定性.
    • 在特定的散流速度和等效比率下对甲和空气混合物进行实验.

    主要成果:

    • 从30°增加旋转的角度到60°增加了旋转数,创建了一个再循环区域并稳定了一个M形的火焰.
    • 将风角度降低到30°,可以保持足够的旋转数,从而形成稳定的V形火焰.
    • 活动控制系统通过动态风角度调整来有效控制火焰稳定.

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

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    结论:

    • 开发的主动控制装置和方法显著提高了旋转的乱预混合火焰的稳定性.
    • 该研究提供了一种强大的技术来提高火焰稳定性,适用于燃气轮机燃烧器设计.
    • 旋转角的动态控制为燃烧系统中管理火焰行为提供了一种有前途的方法.