基于CFD-DEM合器的混凝土管道的抽磨损特性研究
Yuankun Liao1, Kai Cheng2, Wuhe Sun2
1School of Mechanical and AerosPace Engineering, Jilin University, Changchun, 130022, Jilin, China. 1348638810@qq.com.
Scientific reports
|September 26, 2023
概括
这项研究使用CFD-DEM分析混凝土抽磨损,发现曲部分经历了最多的磨损. 最佳的速为2-3米/秒,建议总体体积分为15-20%,以尽量减少磨损和堵塞.
科学领域:
- 土木工程 土木工程是指土木工程.
- 材料科学 材料科学 材料科学
- 计算流体动力学的流体动力学.
背景情况:
- 管道的耐用性和施工效率在混凝土送中至关重要.
- 传统的方法往往忽视了管道内的聚合物的复杂相互作用.
- 了解磨损机制对于优化混凝土送操作至关重要.
研究的目的:
- 通过一种新的CFD-DEM合技术,研究混凝土抽过程中的管道磨损.
- 量化磨损大小并确定主要的磨损区域,特别是曲部分.
- 为了确定速和总体体积分数对磨损和堵塞的影响.
主要方法:
- 采用计算流体动力学-离散元件方法 (CFD-DEM) 的合技术.
- 整合了粗块的不规则形状,以模拟混凝土的抽水.
- 在不同的条件下分析了磨损进展,磨损区域和阻塞事件.
主要成果:
- 随着时间的推移,平均管道磨损的二次进化被观察到.
- 曲的管道段表现出最明显的磨损.
- 发现速度比总体体积分更有影响于磨损.
- 确定了2到3米/秒的最佳速范围.
- 总体体积分量的增加导致了增强的磨损和频繁的阻塞.
结论:
- 该CFD-DEM技术提供了详细的洞察力混凝土抽磨损.
- 随着时间的推移,管道的磨损在四级级上加剧,曲线是关键的.
- 优化速度 (2-3 m/s) 和总体体积分率 (15-20%) 对于最小化磨损和防止堵塞至关重要.
相关概念视频
Pumped Concrete
92
Concrete in large quantities can be pumped across long distances for placing in inaccessible sites. This system comprises a hopper that receives concrete from a mixer, a pump to propel the concrete, and pipelines that facilitate its delivery.
For direct-acting pumps, the concrete enters the pump via the inlet valve under the action of gravity and suction created by the movement of the piston. This concrete is then forced into the pipeline and out through the outlet valve by the forward movement...
For direct-acting pumps, the concrete enters the pump via the inlet valve under the action of gravity and suction created by the movement of the piston. This concrete is then forced into the pipeline and out through the outlet valve by the forward movement...
92
Multiple Pipe Systems
782
Multipipe systems consist of complex configurations of interconnected pipes designed to transport fluids efficiently across intricate networks. They are essential in engineering applications requiring precise control over flow distribution, pressure, and head loss. They are categorized into series, parallel, loop, and network configurations, each distinguished by unique flow characteristics and applications.
Series Configuration
In a series configuration, fluid flows sequentially from one pipe...
Series Configuration
In a series configuration, fluid flows sequentially from one pipe...
782
General Characteristics of Pipe Flow II
1.1K
When fluid enters a pipe, it first passes through the entrance region, where the velocity profile adjusts due to viscous effects. In this region, a boundary layer forms along the pipe walls and grows until it fully occupies the pipe's cross-section. Once the boundary layer merges, the flow becomes fully developed, with a steady velocity profile that remains consistent along the pipe's length.
The distance to reach a fully developed flow is called the entrance length and depends on the...
The distance to reach a fully developed flow is called the entrance length and depends on the...
1.1K
Permeability of Concrete
164
Permeability in the context of concrete refers to how easily liquids or gases can pass through the material. This quality is crucial for assessing the water-tightness and durability of concrete structures and their resistance to chemical attacks. Concrete permeability can be determined through comparative laboratory tests. These tests typically involve sealing a concrete specimen from the sides, applying water pressure to the top surface with pressure, and measuring the amount of water passing...
164
General Characteristics of Pipe Flow I
1.2K
Pipe flow refers to the movement of fluids within fully enclosed conduits, typically cylindrical in shape, such as water pipes or hydraulic hoses. These conduits are designed to withstand high-pressure gradients that drive fluid movement, contrasting with open-channel flows, where gravity is the primary driving force. Rectangular conduits, like air conditioning and heating ducts, generally operate at lower pressures and are less suited for high-pressure applications.
The classification of fluid...
The classification of fluid...
1.2K
Pore Size Distribution
158
In concrete, the pore size distribution significantly influences the material's properties. Capillary pores, markedly larger than gel pores, form a vast network within partially hydrated cement paste, reducing the concrete's strength and increasing its permeability. This heightened permeability leads to a greater risk of damage from environmental factors like freeze-thaw cycles and chemical attacks, with the extent of vulnerability also being tied to the water-to-cement ratio.
Adequate...
Adequate...
158


