fluidics的音标为:[ˈfluːɪdɪks] ,中文翻译为“流体动力学”。
速记技巧:可以简写为“流动力”,同时末尾的“s”表示复数形式。
Fluidics这个词源自希腊语,它的词源包括“fluid”(流体)和“dike”(界线或边界)。它的主要变化形式是“fluidity”,用来描述流体的流动性。
相关单词:
1. "Fluid"(流体) - 是一种连续的、可以流动的物质形态,在物理学、化学、生物学和医学等领域都有广泛应用。
2. "Flow"(流动) - 是流体运动的基本方式,也是许多工程和科学领域的重要概念。
3. "FLOW"(流动) - 是一个名词,指液体或气体在某一特定空间的连续运动。
4. "Fluidity"(流动性) - 是fluidics的一个常见变化形式,用来描述物质的流动性。
5. "Dynamics"(动力学) - 是物理学的一个分支,研究的是物质、能量和信息如何在自然界中运动和变化。
6. "Conduit"(导管) - 是一种用于引导和输送流体的管状结构,在许多工程和科学领域都有应用。
7. "Pump"(泵) - 是一种用于提高流体压力并输送的设备,在许多工业和实验室应用中都有使用。
8. "Transport"(运输) - 指物质、能量和信息的长距离移动,是许多科学和工程领域的重要概念。
9. "Evolution"(进化) - 指生物或种群在时间中的变化,是生物学、生态学和进化遗传学的重要概念。
10. "Dispersion"(散布) - 指物质、能量或信息的分散或传播,在许多科学和工程领域都有应用。
常用短语:
1. fluid dynamics
2. fluid flow
3. fluid viscosity
4. fluid mixing
5. fluid separation
6. fluid control
7. fluid purification
8. fluid transport
例句:
1. The fluid dynamics of a river is complex, but it is essential for the survival of the ecosystem.
2. Fluid flow in a pipe can be easily controlled by adjusting the valve.
3. Fluid viscosity plays a crucial role in determining the efficiency of a pump.
4. Fluid separation is crucial in many industrial processes, such as water treatment and oil recovery.
5. Fluid control is essential in medical applications, such as blood transfusion and drug delivery.
6. Fluid purification is necessary to ensure the safety and quality of food and beverages.
7. Fluid transport is crucial for the growth and development of plants and microorganisms.
英文小作文:
Fluidics: The Magic of Flow
Fluidics is the study of how fluids move, interact, and behave under various conditions. From the simple movement of a streamline to the complex behavior of turbulence, fluidics is a fascinating field that has many practical applications.
From the design of aerodynamic vehicles to the operation of hydraulic systems, fluidics plays an essential role in our daily lives. Understanding fluidics can help us better understand our world and develop innovative solutions to various challenges.
From the mixing of chemicals to the separation of particles, fluidics is essential in many industrial processes. In healthcare, fluidics plays a crucial role in blood transfusion, drug delivery, and dialysis treatments. In food and beverage production, fluidics is used for precise temperature control and ingredient mixing, ensuring the safety and quality of our food supply.
Fluidics is a fascinating field that continues to captivate scientists and engineers alike. With its many practical applications and potential for further advancements, fluidics will continue to play an essential role in our future.