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您现在的位置: > 公共英语 > anemometry

anemometry

anemometry 的音标为 [ˌæne-ˈmɔːmɪ-ti],翻译为“风速计,气流测定法”。

速记技巧:将单词拆分记忆,an-e-nom-e-try,其中an和e是元音字母,nom表示名词,-try表示尝试。可以谐音记忆为“俺名词试”,表示用风速计进行气流测定。

Anemometry is a term that refers to the measurement of wind speed or airflow. The word itself is derived from the Greek words "anemos" (wind) and "metron" (measure).

The term has undergone some changes over time. Originally, the term "anemometry" was used to describe wind speed measurement devices, which were typically mechanical in nature. However, with the development of modern technology, the term has come to refer to more general methods of measuring airflow, including airflow in electronic circuits and other systems.

Related words include:

1. Anemometer - a device used to measure wind speed, typically a mechanical device that rotates with the wind

2. Aerometry - the measurement of air pressure or density

3. Aero - the study of air and its properties

4. Aerofoil - a curved surface that creates a flow of air

5. Aircraft - a flying machine that uses airflow for propulsion

6. Aerodynamics - the study of the forces and pressures acting on moving air and other fluids

7. Aerospace - the combination of aeronautical and space technology

8. Anemodynamics - the study of how wind affects moving objects

9. Anemotransmissometer - a device used to measure the amount of airflow transmitted through a system or material

10. Aeroengineering - the design and development of aircraft and other aeronautical equipment

Anemometry is an important field in science and engineering, as it plays a crucial role in many areas, including meteorology, aeronautical design, and energy generation.

anemometry常用短语:

1. anemometry of wind speed

2. anemometry of airflow

3. airflow anemometry

4. velocity anemometry

5. wind velocity anemometry

6. anemometric measurement

7. anemometric data

例句:

1. The use of anemometry has greatly improved our understanding of atmospheric dynamics.

2. The engineers used velocity anemometry to measure the speed of the airflow over the car"s bodywork.

3. The anemometric data showed that the wind speed had increased significantly over the last few days.

4. The airflow over the bridge was measured using anemometry, which revealed a strong current.

5. The anemometer recorded a speed of 25 miles per hour, which was much higher than usual.

6. The use of anemometry has become increasingly important in environmental monitoring programs.

7. The importance of wind speed in determining the success of a project cannot be overstated using anemometry.

英文小作文:

The importance of wind speed in our daily lives cannot be overstated. From the way we travel to the way we build our homes, wind speed has a significant impact on our world. Anemometry, the measurement of wind speed, has become increasingly important in environmental monitoring programs and has helped us to understand the role of wind in our environment. However, it is not just environmental monitoring that benefits from anemometry; it is also essential for many other fields, including transportation, engineering, and even weather forecasting.

In transportation, for example, understanding wind speed is crucial for ensuring the safety and efficiency of aircraft and ships. In engineering, wind speed is used to assess the stability of structures and to design them accordingly. Finally, in weather forecasting, wind speed is used to determine the strength and direction of winds, which can have a significant impact on our daily lives. Therefore, it is essential that we continue to use anemometry to understand and monitor the role of wind in our world.

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