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Geostrophic的詞源:
詞根“geostrophic”來源于希臘語,意為“地球的”。
變化形式:
復(fù)數(shù)形式為“geostrophic”,意為“地球的”。
相關(guān)單詞:
1. Geostrophic current:地轉(zhuǎn)流,一種在地球表面流動的流體,由于地球自轉(zhuǎn)而產(chǎn)生的科里奧利力對其有影響。
2. Geostrophic speed:地轉(zhuǎn)速度,描述地轉(zhuǎn)流中流體運(yùn)動的速度。
3. Geostrophic wind:地轉(zhuǎn)風(fēng),描述在地球表面流動的風(fēng),由于地球自轉(zhuǎn)而產(chǎn)生的科里奧利力對其有影響。
4. Geostrophy:地轉(zhuǎn)平衡,指在地球表面流動的流體系統(tǒng),受到的科里奧利力與慣性力相等。
5. Equatorial geostrophic current:赤道地轉(zhuǎn)流,指在赤道地區(qū)流動的流體,由于地球自轉(zhuǎn)而產(chǎn)生的科里奧利力對其有影響。
6. Shear geostrophy:剪切地轉(zhuǎn)平衡,指在垂直方向上流動的流體系統(tǒng),受到的科里奧利力和慣性力相等。
7. Geostrophic velocity field:地轉(zhuǎn)速度場,描述流體運(yùn)動的速度場,其中流體的速度與地轉(zhuǎn)速度相等。
8. Geostrophic wind shear:地轉(zhuǎn)風(fēng)剪切,指在垂直方向上流動的風(fēng)速隨高度的變化。
9. Geostrophic wind stress:地轉(zhuǎn)風(fēng)應(yīng)力,描述風(fēng)對流體的作用力,與地轉(zhuǎn)風(fēng)速度成正比。
10. Non-geostrophic flow:非地轉(zhuǎn)流,指流體運(yùn)動不受地球自轉(zhuǎn)影響或影響較小的流動系統(tǒng)。
常用短語:
1. geostrophic wind
2. geostrophic current
3. geostrophic balance
4. geostrophic flow
5. geostrophic adjustment
6. geostrophic velocity
7. geostrophic circulation
雙語例句:
1. The wind speed in the region is mainly determined by the geostrophic wind.
該地區(qū)的風(fēng)速主要由地轉(zhuǎn)風(fēng)決定。
2. The geostrophic current flows from the northern to the southern hemisphere.
地轉(zhuǎn)流從北半球流向南半球。
3. Geostrophic adjustment is necessary to maintain the balance of the ocean current system.
為了維持洋流系統(tǒng)的平衡,需要進(jìn)行地轉(zhuǎn)調(diào)整。
4. The geostrophic velocity determines the speed at which water flows in a given direction.
地轉(zhuǎn)速度決定了水在某一方向上的流動速度。
5. The geostrophic circulation plays an important role in global climate regulation.
地轉(zhuǎn)環(huán)流在全球氣候調(diào)節(jié)中發(fā)揮著重要作用。
6. The ocean current system is influenced by various factors, including the geostrophic current and wind stress.
海洋環(huán)流系統(tǒng)受到多種因素的影響,包括地轉(zhuǎn)流和風(fēng)應(yīng)力。
7. The ocean current system is constantly undergoing geostrophic adjustment to maintain balance.
海洋環(huán)流系統(tǒng)不斷進(jìn)行地轉(zhuǎn)調(diào)整以維持平衡。
英文小作文:
Title: The Mystery of the Geostrophic Current
The ocean current system is a complex network of currents and flows that plays a crucial role in the global climate system. Among these currents, the geostrophic current has always fascinated scientists and researchers for its mysterious behavior and influence on the oceanic environment.
The geostrophic current flows in a straight line at a constant speed, independent of the local topography and other factors. It is driven by the balance between the Coriolis force and the pressure gradient force, resulting in a constant flow of water from one region to another. This constant flow creates a dynamic balance in the oceanic environment, maintaining a certain level of circulation and exchange of materials between different regions.
However, the geostrophic current is not without its challenges. It is influenced by various factors, including wind stress, temperature differences, and local topography, which can affect its speed and direction. Understanding these factors and their interactions with the geostrophic current is crucial for predicting and managing oceanic environments and their impact on climate change.
The geostrophic current is an ongoing mystery that continues to captivate scientists and researchers, opening new avenues for exploration and discovery in the oceanic environment. Understanding its role and influence on the global climate system is essential for maintaining a sustainable environment for future generations.
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