Related Experiment Video
Updated: May 11, 2026

A Modeling and Simulation Method for Preliminary Design of an Electro-Variable Displacement Pump
Published on: June 1, 2022
Axial power distribution control in pressurized water reactors based on flow rate regulation based on distributed
Qizhi Duan1, Minghan Yang2, Shuai Chen2
1State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment, China Nuclear Power Engineering Co., Ltd., Shenzhen, 518172, Guangdong, China. qzduan_cgn@163.com.
Abstract:
The control of axial power distribution is a key challenge in the operation of Pressurized Water Reactors (PWRs). Traditionally, this control has been achieved by adjusting the concentration of soluble boron and moving a select number of control rod banks. In this work, an innovative axial power distribution control method based on flow rate regulation is proposed. This method can reduce the dependence on boron concentration regulation and control rod banks movement, so that the treatment for lots of liquid waste can be avoided, and the structure of reactor cores may become more compact. Different with the lumped parameter system control method, this research introduces a unique PWR core exponential stability condition based on SDLMI from the distributed parameter control theory. Moreover, a distributed parameter state observer is established to provide the feedback of power density, delayed neutron precursor density and [Formula: see text] concentration which cannot be measured by sensors directly in PWRs. The numerical experiment shows that the axial power distribution control method based on flow rate regulation can inhibit the power density peak and eliminate hot spots efficiently.
Related Concept Videos
Control of Power Flow
The Power Flow Problem and Solution
Fast Decoupled and DC Powerflow
Load-frequency control
Time-Domain Interpretation of PD Control
Consider the example of control of motor torque. Initially, a positive...
Turbine-Governor Control
