相关实验视频
Updated: Jun 29, 2025

06:42
Magnetically Induced Rotating Rayleigh-Taylor Instability
Published on: March 3, 2017
9.6K
沿SN1987A和其他恒星的赤道环聚集的水力动力学机制
Michael J Wadas1, William J White1, Heath J LeFevre1
1University of Michigan, Ann Arbor, Michigan 48109, USA.
Physical review letters
|April 2, 2024
概括
乌的不稳定性解释了超新星1987A环中的团数. 这一从模拟中得出的发现,澄清了这些结构在膨胀环中的起源.
科学领域:
- 天体物理学 天体物理学
- 计算流体动力学的流体动力学.
背景情况:
- 超新星1987A的赤道环呈现出众多的团块,其起源仍然无法解释.
- 几十年的研究尚未对这些团块的数量和分布产生明确的解释.
研究的目的:
- 研究负责形成超新星1987A.赤道环中的团块的物理机制.
- 为了确定原始恒星膨胀环中的不稳定性是否可以解释观测到的块状结构.
主要方法:
- 在超新星发生之前,在膨胀环中的流体流动的线性分析.
- 环的演变的水力动力学模拟.
主要成果:
- 分析显示,不断膨胀的环是容易受到乌在核心之间的不稳定.
- 由不稳定性预测的主导波数与观察到的集群数量密切匹配.
- 这种一致性表明,Crow的不稳定性在刺激团块形成中起着关键作用.
结论:
- 乌的不稳定性为超新星1987A环中的团块的起源和数量提供了合理的解释.
- 未来需要采用非线性分析和额外的恒星物理学的研究,以进一步完善对遗留结构和祖先进化的理解.
相关概念视频
Steady, Laminar Flow Between Parallel Plates
181
Understanding steady, laminar flow between parallel plates is essential for analyzing and designing flow in narrow rectangular channels, commonly found in various water conveyance and drainage systems. The Navier-Stokes equations govern fluid motion and are generally challenging to solve due to their nonlinearity. However, simplifications are possible in certain cases, like the steady laminar flow between parallel plates. For this scenario, we assume steady, incompressible, laminar flow.
181
Dynamics of Circular Motion
13.5K
An object undergoing circular motion, like a race car, is accelerating because it is changing the direction of its velocity. This centrally directed acceleration is called centripetal acceleration. This acceleration acts along the radius of the curved path (thus is also referred to as radial acceleration).
Any acceleration must be produced by some force. Therefore, any force or combination of forces can cause centripetal acceleration. A few examples include the tension in the rope on a...
Any acceleration must be produced by some force. Therefore, any force or combination of forces can cause centripetal acceleration. A few examples include the tension in the rope on a...
13.5K
Non-uniform Circular Motion
7.2K
In uniform circular motion, the particle executing circular motion has a constant speed, and the circle is at a fixed radius. However, not all circular motion occurs at a constant speed. A particle can travel in a circle and speed up or slow down, showing an acceleration in the direction of motion. In that case, the motion is called non-uniform circular motion, and an additional acceleration is introduced, which is in the direction tangential to the circle.
For example, such...
For example, such...
7.2K
Atomic Nuclei: Nuclear Relaxation Processes
651
In the absence of an external magnetic field, nuclear spin states are degenerate and randomly oriented. When a magnetic field is applied, the spins begin to precess and orient themselves along (lower energy) or against (higher energy) the direction of the field. At equilibrium, a slight excess population of spins exists in the lower energy state. Because the direction of the magnetic field is fixed as the z-axis, the precessing magnetic moments are randomly oriented around the z-axis.
651
The Contractile Ring
6.4K
Contractile rings are composed of microfilaments and are responsible for separating the daughter cells during cytokinesis. Contractile ring assembly proceeds along with other cell cycle events; however, very few mechanistic details are known about the timing and coordination of the contractile rings with the cell cycle.
A small GTPase, RhoA, controls the function and assembly of the contractile ring. RhoA belongs to the Ras superfamily of proteins. The activation of formins by RhoA promotes...
A small GTPase, RhoA, controls the function and assembly of the contractile ring. RhoA belongs to the Ras superfamily of proteins. The activation of formins by RhoA promotes...
6.4K
Steady, Laminar Flow in Circular Tubes
199
Hagen-Poiseuille flow describes a viscous fluid's steady, incompressible flow through a cylindrical tube with a constant radius R. This flow profile is often applied to understand fluid transport in narrow channels, such as capillaries. It serves as a foundational example of laminar flow. In this model, cylindrical coordinates (r,θ,z) are used to describe the radial (r), angular (θ), and axial (z) dimensions within the tube. For Hagen-Poiseuille flow, the velocity profile is...
199

