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相关概念视频

Gradually Varying Flow01:29

Gradually Varying Flow

Gradually varying flow (GVF) in open channels describes situations where water depth changes slowly along the channel due to factors like non-uniform bed slope, channel shape variations, or obstructions. This flow type occurs when the depth adjusts gradually to balance gravitational forces, shear forces, and energy requirements, resulting in a low rate of depth change.Characteristics of Gradually Varying FlowGVF is commonly observed in natural streams, rivers, and canals, where flow depth...
Underflow Gates01:30

Underflow Gates

Underflow gates are vital for controlling water flow in irrigation canals. The three main types of underflow gates — vertical, radial, and drum gates — serve different purposes while ensuring effective flow management. Vertical gates move up and down, generating a free-flowing water jet; radial gates pivot to regulate the flow; and drum gates rotate for precise adjustments. The flow through these gates is influenced by downstream conditions, resulting in free or drowned outflow.Free and Drowned...
The Water Cycle01:00

The Water Cycle

The Earth’s hydrosphere includes all of the areas where the storage and movement of water occurs. Since water is the basis of all living processes, the cycling of water is extremely important to ecosystem dynamics.
Pressure Variation in a Fluid at Rest01:11

Pressure Variation in a Fluid at Rest

In a fluid at rest, the pressure at any point beneath the fluid surface depends solely on the depth, not on the container's shape or size. This principle, known as hydrostatic pressure, arises because, in stationary fluids, there is no acceleration, meaning the forces within the fluid balance out. Only vertical forces, caused by the weight of the fluid above, contribute to pressure changes with depth.
When measuring pressure at two different levels within the fluid, the difference in pressure...
Precipitation Gravimetry01:03

Precipitation Gravimetry

Precipitation gravimetry is based on converting an analyte into a sparingly soluble precipitate, which is separated by filtration and weighed. An ideal precipitate should be pure, insoluble, of known composition, and easily filtered from the reaction mixture.
In determining nickel by gravimetric analysis, a precipitant of ethanolic dimethylglyoxime is added to a hot nickel salt solution. This is quickly followed by the dropwise addition of dilute ammonia solution until precipitation occurs. A...
Plane Potential Flows01:23

Plane Potential Flows

Plane potential flows simplify fluid motion by assuming the fluid to be irrotational and incompressible. These characteristics allow these flows to be described by a velocity potential function, ϕ, representing the flow speed in a given direction, and a stream function, ψ, that visualizes the flow path, both governed by Laplace's equation. These parameters help in estimating flow patterns, velocity distributions, and pressure fields around various hydraulic structures.
Uniform Flow
Uniform flow...

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相关实验视频

Updated: May 14, 2026

Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management
08:09

Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management

Published on: September 12, 2017

地下水表深度的全球模式

Y Fan1, H Li, G Miguez-Macho

  • 1Department of Earth and Planetary Sciences, Rutgers University, New Brunswick, NJ 08854, USA. yingfan@rci.rutgers.edu

Science (New York, N.Y.)
|February 23, 2013
PubMed
概括

浅地下水对全球陆地生态系统至关重要,支持22-32%的陆地面积. 了解水表深度是生态系统健康和水资源管理的关键.

科学领域:

  • 地球科学 地球科学 地球科学
  • 生态生态学 生态生态学
  • 水文学的水文学

背景情况:

  • 浅地下水通过保持河流底流和根区土壤水分来维持陆地生态系统.
  • 全球水表深度的模式及其生态意义仍然不太清楚.

研究的目的:

  • 为了绘制全球水表深度图案.
  • 确定浅地下水极大地支持陆地生态系统的地区.

主要方法:

  • 从政府档案和文献中编制了全球水表深度观测数据.
  • 利用由气候,地形和海平面数据驱动的地下水模型推断模式并填补数据空白.

主要成果:

  • 浅地下水影响全球22-32%的陆地面积.
  • 大约15%的土地有地下水养的地表水,而7-17%的地下水位在植物植根深度内.
  • 水表深度模式与全球湿地分布和区域/本地植被梯度相关.

结论:

  • 浅地下水在支持全球陆地生态系统方面发挥着至关重要的作用.
  • 地图化水表深度对于了解生态系统功能和水资源的可用性至关重要.

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Continuous Hydrologic and Water Quality Monitoring of Vernal Ponds
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Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management

Published on: September 12, 2017

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Tracking Infiltration Front Depth Using Time-lapse Multi-offset Gathers Collected with Array Antenna Ground Penetrating Radar

Published on: May 1, 2018

Continuous Hydrologic and Water Quality Monitoring of Vernal Ponds
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Continuous Hydrologic and Water Quality Monitoring of Vernal Ponds

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