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相关概念视频

Crystal Field Theory - Tetrahedral and Square Planar Complexes02:46

Crystal Field Theory - Tetrahedral and Square Planar Complexes

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Tetrahedral Complexes
Crystal field theory (CFT) is applicable to molecules in geometries other than octahedral. In octahedral complexes, the lobes of the dx2−y2 and dz2 orbitals point directly at the ligands. For tetrahedral complexes, the d orbitals remain in place, but with only four ligands located between the axes. None of the orbitals points directly at the tetrahedral ligands. However, the dx2−y2 and dz2 orbitals (along the Cartesian axes) overlap with the ligands less than the dxy,...
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Temperature Measurement Sites

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A thermometer measures body temperature. The common sites for measuring body temperature are the oral cavity, axillary region, temporal artery, and skin surface, such as the forehead, abdomen, and axilla. True core body temperature is assessed in the rectum, tympanic membrane, pulmonary artery, esophagus, and urinary bladder.
Oral: When assessing oral temperature, the thermometer tip should be placed under the tongue in the posterior sublingual pocket. It offers accurate readings and can be...
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Combustion Energy: A Measure of Stability in Alkanes and Cycloalkanes02:14

Combustion Energy: A Measure of Stability in Alkanes and Cycloalkanes

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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...
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Equipments Used to Measure Body Temperature01:13

Equipments Used to Measure Body Temperature

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Body temperature can be assessed using various devices and measured in Celsius or Fahrenheit.
Glass-bulb Thermometer:
Glass-bulb thermometers are hollow glass tubes with a bulb tip containing liquid such as ethanol or mercury. Historically, glass bulb mercury thermometers were the standard device to measure body temperature. Today, mercury thermometers are prohibited in many countries due to the hazardous effects of mercury and the risk of exposure if the glass bulb breaks. In general,...
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Internal Combustion Engine

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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...
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Dimensional Analysis

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Dimensional analysis, also known as the factor label method, is a versatile approach for mathematical operations. The main principle behind this approach is: the units of quantities must be subjected to the same mathematical operations as their associated numbers. This method can be applied to computations ranging from simple unit conversions to more complex and multi-step calculations involving several different quantities and their units.
Conversion Factors and Dimensional Analysis
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Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping
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基于平面阵列传感器的三维燃烧场温度测量

Xiaodong Huang1, Zhiling Li1, Jia Wang2

  • 1Department of Intelligent and Information Engineering, Taiyuan University, Taiyuan 030051, China.

Micromachines
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概括
此摘要是机器生成的。

这项研究引入了一种新的面积阵列传感器方法,用于精确的3D火焰温度场测量,克服了传统可调节二极管激光吸收断层扫描 (TDLAT) 的局限性. 这种增强的燃烧诊断为复杂的火焰场景提供了高分辨率成像.

关键词:
这就是TDLAS.区域传感器阵列的区域传感器阵列.温度测量温度测量的测量三维成像三维成像技术

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科学领域:

  • 光学诊断仪器的使用.
  • 燃烧科学是一种科学.
  • 频谱学是一种光谱学.

背景情况:

  • 高分辨率的3D温度场对于火焰燃烧研究至关重要.
  • 可调节二极管激光吸收断层扫描 (TDLAT) 是有效的,但受限于视线测量,导致数据维度减少.
  • 分析复杂的燃烧场需要先进的诊断技术.

研究的目的:

  • 提出和验证一种新的方法,用于精确的3D火焰温度场测量,使用面积阵列传感器合吸收光谱学.
  • 通过克服传统TDLAT的维度限制,增强燃烧诊断.
  • 为了实现高分辨率的多维温度场重建.

主要方法:

  • 使用吸收光谱与面积阵列传感器相结合.
  • 将激光束配置为圆形状,以穿过燃烧场.
  • 从区域阵列传感器捕获的投影信号中重建3D温度场.
  • 通过数值模拟验证该方法,并与实验TDLAT结果进行比较.

主要成果:

  • 拟议的方法准确地测量了3D火焰温度场.
  • 数字模拟证实了算法的准确性和稳定性.
  • 与TDLAT进行的实验比较显示了高精度.
  • 在复杂的火焰成像场景中实现了温度场的有效测量.

结论:

  • 面积阵列传感器合吸收光谱法为3D火焰温度场测量提供了强大而精确的方法.
  • 与传统的TDLAT相比,这种技术显著提高了燃烧诊断能力.
  • 开发的系统适用于复杂的燃烧环境中的高分辨率成像.