来自在内蒙古西林河流域土壤,液压,植物和气象变量多尺度测量的数据
1College of Hydraulics and Civil Engineering, Ludong University, Yantai, Shandong 264025, China.
Data in brief
|October 11, 2024
概括
在内蒙古,内蒙古是内蒙古.
科学领域:
- 生态生态学 生态生态学
- 土壤科学 土壤科学
- 环境科学 环境科学
背景情况:
- 牧草草地是重要的生态系统.
- 长期的牧场影响土壤,水,植被和气候.
- 了解这些影响对于草原管理至关重要.
研究的目的:
- 提供关于内蒙古长期牧场影响的综合数据集.
- 促进对牧场和气候变化的值反应的研究.
- 提高对影响牲畜承载能力的因素的理解.
主要方法:
- 收集的数据跨越了行人,田间和收获区的尺度.
- 持续监测不同深度的土壤温度和湿度.
- 实地测量土壤特性 (例如,液压导电性,有机碳) 和植物参数.
主要成果:
- 在不同放牧制度下对土壤和环境变量的详细观察 (排除,连续,重量,中等).
- 数据跨越多年 (2004-2008年,自2016年以来持续监测).
- 综合数据集为生态系统动态提供了洞察力.
结论:
- 该数据集是研究草原生态系统的宝贵资源.
- 它支持对生态值和适应气候变化的研究.
- 这些发现可以为蒙古草原的可持续畜牧管理策略提供信息.
相关概念视频
Steady Flow of a Fluid Stream
Consider a control volume, such as a pipe with solid boundaries, through which fluid flows and changes direction due to the impulse exerted by the resulting force from the pipe walls. In steady flow, the mass of fluid entering the control volume at a given time, t, with velocity v1, is equal to the mass leaving after infinitesimal time dt, with velocity v2.
During this process, the momentum of the fluid within the control volume remains constant over the time interval dt. By applying the...
During this process, the momentum of the fluid within the control volume remains constant over the time interval dt. By applying the...
Conservation of Mass in Moving, Nondeforming Control Volume
Stormwater detention basins are essential in managing runoff during heavy rainfall, particularly in urban areas where impervious surfaces increase the risk of flooding. Understanding the conservation of mass in these systems allows engineers to optimize basin performance, balancing inflow, outflow, and water storage.
In the context of a detention basin, the conservation of mass states that the total mass of water entering the basin must equal the mass leaving the basin plus any accumulation of...
In the context of a detention basin, the conservation of mass states that the total mass of water entering the basin must equal the mass leaving the basin plus any accumulation of...
Typical Model Studies
Fluid mechanics model studies often utilize scaled-down systems to predict fluid behavior in full-scale environments, such as river flows, dam spillways, and structures interacting with open surfaces. Maintaining Froude number similarity in river models is crucial, as it replicates surface flow features like wave patterns and velocities.
Design Example: Creating a Hydraulic Model of a Dam Spillway
Scaled hydraulic models of dam spillways provide a practical way to replicate and study the intricate flow dynamics of these structures. Often built to a 1:15 ratio, these models allow for observing critical water behavior, such as velocity distribution, flow patterns, and energy dissipation.
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...
Rapidly Varying Flow
Rapidly varying flow (RVF) in open channels is characterized by abrupt changes in flow depth over a short distance, with the rate of depth change relative to distance often approaching unity. These flows are inherently complex due to their transient and multi-dimensional nature, making exact analysis difficult. However, approximate solutions using simplified models provide valuable insights into their behavior.Key Features of Rapidly Varying FlowRVF is commonly observed in scenarios involving...


