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相关概念视频

Temperature Measurement Sites01:14

Temperature Measurement Sites

1.8K
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...
1.8K
IR Spectrometers01:25

IR Spectrometers

1.2K
There are two main infrared (IR) spectrophotometers: dispersive IR spectrometers and Fourier transform infrared (FTIR) spectrometers. In a dispersive IR spectrometer, a beam of infrared radiation produced by a hot wire is divided into two parallel equal-intensity beams using mirrors. One beam passes through the sample, while another is a reference beam. The beams then move through the monochromator, which separates the radiations into a continuous spectrum of different frequencies. The...
1.2K
Equipments Used to Measure Body Temperature01:13

Equipments Used to Measure Body Temperature

1.0K
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,...
1.0K

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相关实验视频

Updated: Jul 16, 2025

Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping
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Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping

Published on: November 7, 2016

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分布式温度传感器在840nm运行,用于短距离传感应用.

Luís C B Silva, Marcelo E V Segatto

    Applied optics
    |September 14, 2023
    PubMed
    概括

    这项研究引入了一个基于拉曼的分布式温度传感器 (RDTS),在840nm运行. 这种替代方法可以改善短距离传感应用的信号噪声比 (SNR).

    科学领域:

    • 光电学是指光电子产品.
    • 光纤传感技术是光纤传感技术.

    背景情况:

    • 基于拉曼的分布式温度传感 (RDTS) 是光学传感的一个关键技术.
    • 传统的RDTS系统主要使用1550纳米波长,用于远程应用,因为纤维损耗较低.
    • 然而,1550 nm的运行由于信号强度较弱而导致信号噪声比率 (SNR) 较低.

    研究的目的:

    • 调查RDTS的替代波长,以提高系统性能.
    • 为了解决传统1550 nm RDTS系统的SNR限制.

    主要方法:

    • 在840nm光谱区域运行的RDTS系统的开发和分析.
    • 对SNR性能与1550nm系统进行比较评估.

    主要成果:

    • 与传统系统相比,840nm的RDTS显示了更好的信号噪声比 (SNR).
    • 这种波长适用于短距离分布式温度传感应用.

    结论:

    • 在840nm运行RDTS为增强短距离传感中的SNR提供了可行的解决方案.
    • 这种方法为改善RDTS性能提供了一个切实可行的替代方案,在这种情况下,远程并非至关重要.

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