A Method for Determining the Instability Boundary of Flow in Parallel Narrow Channels under Dynamic Motion Conditions
A definite method and narrow-channel technology, applied in instrumentation, design optimization/simulation, calculation, etc., can solve problems such as large thermal margins and inaccuracies hidden by the instability boundary, and meet thermal-hydraulic design and safety requirements The need for analysis, ensuring safety, the effects of good thermal-hydraulic design and the need for safety analysis
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment
[0048] Such as figure 1 As shown, a method for determining the instability boundary of parallel narrow channel flow under dynamic conditions, including the following steps:
[0049]S1: Obtain and analyze the flow instability data of parallel narrow channels under vertical static conditions, and obtain the static calculation model of the instability boundary under vertical static conditions:
[0050] Take the inlet subcooling degree N sub and the number of inlet phase transitions N pch As a dimensionless parameter of the instability boundary, the calculation model of the instability boundary under the vertical static condition is obtained through data fitting, as follows:
[0051] N pch = K 1 N sub +K 2 (5);
[0052] S2: Obtain and analyze the instability data of the parallel narrow channel flow under the dynamic condition of motion, and obtain the motion correction parameters, which include pressure parameters, extreme points, dimensionless acceleration and dimensionle...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


