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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
Equipments Used to Measure Body Temperature01:13

Equipments Used to Measure Body Temperature

1.1K
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,...
1.1K
Resistivity01:22

Resistivity

3.6K
When a voltage is applied to a conductor, an electrical field is generated, and charges in the conductor feel the force due to the electrical field. The current density that results depends on the electrical field and the properties of the material. In some materials, including metals at a given temperature, the current density is approximately proportional to the electrical field. In these cases, the current density can be modeled as:
3.6K
Pressure Gauges01:20

Pressure Gauges

3.5K
Most pressure gauges, like those on scuba tanks, are calibrated to read zero at atmospheric pressure. Readings from such gauges are called the gauge pressure, which is the pressure relative to atmospheric pressure. When the pressure inside the tank exceeds atmospheric pressure, the gauge reports a positive value. Some gauges are designed to measure negative pressure. For example, many physics experiments must take place in a vacuum chamber, a rigid chamber from which some of the air is pumped...
3.5K
Thermal expansion and Thermal stress: Problem Solving01:27

Thermal expansion and Thermal stress: Problem Solving

1.2K
San Francisco's Golden Gate Bridge is exposed to temperatures ranging from -15 °C to 40 °C. At its coldest, the main span of the bridge is 1275 m long. Assuming that the bridge is made entirely of steel, what is the change in its length between these temperatures?
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in...
1.2K
Constant Pressure Calorimetry03:02

Constant Pressure Calorimetry

85.5K
Calorimetry is a technique used to measure the amount of heat involved in a chemical or physical process or to measure the heat transferred to or from a substance. The heat is exchanged with a calibrated and insulated device called the calorimeter. Calorimetry experiments are based on the assumption that there is no heat exchange between the insulated calorimeter and the external environment. The well-insulated calorimeters prevent the transfer of heat between the calorimeter and its external...
85.5K

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相关实验视频

Updated: Jul 24, 2025

Design, Instrumentation and Usage Protocols for Distributed In Situ Thermal Hot Spots Monitoring in Electric Coils using FBG Sensor Multiplexing
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Design, Instrumentation and Usage Protocols for Distributed In Situ Thermal Hot Spots Monitoring in Electric Coils using FBG Sensor Multiplexing

Published on: March 8, 2020

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物联网传感器对地热能装置的挑战 监测:一项调查

Michal Prauzek1, Tereza Kucova1, Jaromir Konecny1

  • 1Department of Cybernetics and Biomedical Engineering, VSB-Technical University of Ostrava, 708 00 Ostrava, Czech Republic.

Sensors (Basel, Switzerland)
|July 8, 2023
PubMed
概括

这项调查探讨了物联网 (IoT) 传感器用于地热能监测. 它审查了传感器技术,通信和云解决方案,突出地热装置的未来机会.

关键词:
这就是为什么物联网是物联网物联网.边缘计算是一种边缘计算.能源采集 能源采集地热能是地球热能中的一种.地热传感器地热传感器

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Manufacturing Simple and Inexpensive Soil Surface Temperature and Gravimetric Water Content Sensors
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Manufacturing Simple and Inexpensive Soil Surface Temperature and Gravimetric Water Content Sensors

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Manufacturing Simple and Inexpensive Soil Surface Temperature and Gravimetric Water Content Sensors
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Manufacturing Simple and Inexpensive Soil Surface Temperature and Gravimetric Water Content Sensors

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科学领域:

  • 地质科学和可再生能源工程

背景情况:

  • 地热能源装置在城市发展和改造中越来越普遍.
  • 地热技术的进步需要复杂的监测和控制系统.

研究的目的:

  • 确定未来的物联网 (IoT) 传感器在地热能源装置中的发展和部署机会.
  • 调查当前的传感器技术,通信方法和云解决方案,用于地热监测.

主要方法:

  • 审查用于监测温度,流量和机械参数的传感器技术.
  • 对物联网 (IoT) 通信技术,云解决方案,能源采集和地热应用边缘计算的调查.

主要成果:

  • 传感器类型的详细介绍,其技术背景,以及在地热系统中的潜在应用.
  • 对物联网节点设计,数据传输,云服务,能源采集和边缘计算与地热监测相关的分析.

结论:

  • 讨论地热能源物联网传感器部署当前的研究挑战.
  • 概述了物联网传感器解决方案在地热监测中的新应用领域和技术创新.