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相关概念视频

Center of Gravity00:58

Center of Gravity

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The center of gravity (COG) of an object is the point where the object's total weight is considered to be concentrated. Knowing the location of the center of gravity is useful when predicting the behavior of a moving object or designing static structures. In a uniform gravitational field, the center of gravity is similar to the center of mass (COM); yet, these two points can be positioned differently. For example, the Moon's center of mass lies very close to its geometric center, but...
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Center of Gravity01:15

Center of Gravity

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The center of gravity is the point at which an object's weight appears to be concentrated and can be used to balance the object perfectly. This point is essential in mechanics as it provides information regarding a body's stability and moments of inertia. The center of gravity does not always have to fall within the shape or boundaries of the body; it may also lie outside the body in certain cases.
To determine its location, the principle of moments can be utilized by dividing the object into...
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The gravitational acceleration of an object near the Earth's surface is called the acceleration due to gravity. It can be measured by conducting simple experiments on Earth. However, such an experiment is impossible to conduct on the surface of other planets.
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Gravitation is one of the four fundamental forces in nature. The force between objects on Earth and Earth itself is called gravity.
Like other forces, gravity does work on an object if it displaces it toward the Earth's center. In this case, the work done by gravity is said to be positive. If an external force acts on the object against the pull of gravity and manages to lift it away from the Earth's center, work is done against gravity. In this case, the net work done is said to be...
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Aggregates typically contain pores, which can be either permeable or impermeable. Considering the pores in the aggregates, the specific gravity of aggregates is defined in three different forms, namely, bulk or gross specific gravity, apparent specific gravity, and absolute specific gravity.
Bulk or gross specific gravity is calculated by taking the ratio of the mass of aggregates in the saturated surface-dry state to the total volume that includes both the solids and the voids within the...
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SYSU_Topo:使用重力地质方法从SWOT衍生引力获得1弧分钟的全球水度度.

Wei Feng1, Dechao An2, Cheinway Hwang3

  • 1School of Geospatial Engineering and Science, Sun Yat-sen University, Zhuhai, 519082, China. fengwei@mail.sysu.edu.cn.

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|January 23, 2026
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概括

通过使用地表水和海洋拓 (SWOT) 数据和重力异常,创建了一个新的全球水度测量产品SYSU_Topo. 该产品提供了改进的海底绘图和海洋建模功能.

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科学领域:

  • 海洋学 海洋学 海洋学
  • 地质物理学 地质物理学
  • 地质测量是指地质测量.

背景情况:

  • 表面水和海洋拓 (SWOT) 任务为地球水体提供了新的见解.
  • 准确的全球水位测量对于海洋建模和地球物理研究至关重要.
  • 现有的浴度数据在覆盖范围和精度上有局限性.

研究的目的:

  • 开发一个名为SYSU_Topo的全新的全球浴度产品.
  • 利用SWOT任务数据和重力异常进行增强的水度测绘.
  • 为科学再利用提供公开可访问的数据和处理代码.

主要方法:

  • 利用来自SWOT_02模型和重力地质方法 (GGM) 的重力异常.
  • 采用分区反转的滑动窗口策略来确定最佳密度对比度.
  • 开发了一种具有边界约束点的融合方法,以减轻拼接效应.

主要成果:

  • 该SYSU_Topo模型以1弧分钟的分辨率提供全球浴度数据 (80°S至80°N).
  • 对广泛的浴度点和GEBCO_2024数据的验证证实了模型的可靠性.
  • 在南中国海,SYSU_Topo表现优越,其表现比其他车型高出8% - 26%.

结论:

  • SWOT数据显示,在数据稀疏的地区,改善浴度有很大的潜力.
  • SYSU_Topo产品为海洋建模,地球物理学和海底绘图提供了宝贵的资源.
  • 开放的数据和代码有助于进一步的研究和应用.