Numerical Investigation and Experiment on Natural Circulation Resistance and Energy Characteristics in a Circulating Axial Pump

Author:

Pu Kexin1,Miao Hongjiang2,Li Juanhong3,Huang Bin45,Yuan Faxu1,Wu Peng3,Wu Dazhuan67

Affiliation:

1. Ocean College, Zhejiang University , Zhoushan 316021, Zhejiang Province, China

2. Hangzhou Dalu Industry Co., Ltd. , Hangzhou 311227, Zhejiang Province, China

3. College of Energy Engineering, Zhejiang University , Hangzhou 310027, Zhejiang Province, China

4. Ocean College, Zhejiang University , Zhoushan 316021, Zhejiang Province, China ; , Zhoushan 316021, China

5. The Engineering Research Center of Oceanic Sensing Technology and Equipment, Ministry of Education , Zhoushan 316021, Zhejiang Province, China ; , Zhoushan 316021, China

6. State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University , Hangzhou 310027, Zhejiang Province, China ; , Hangzhou 310027, Zhejiang Province, China

7. College of Energy Engineering, Zhejiang University , Hangzhou 310027, Zhejiang Province, China ; , Hangzhou 310027, Zhejiang Province, China

Abstract

Abstract The influence of angle matching in rotor–stator interference (RSI) zone on natural circulation resistance (NCR) of circulating pump in natural circulation condition is illustrated by numerical method, and the analysis and optimization method of natural circulation based on loss coefficient curve are established through experiments. The mechanism and analysis formula of runaway speed are extracted, and the distribution diagram of Euler head density function (EHDF) is obtained to carry out image processing and analysis of secondary flow. Then, the optimal design interval of setting angle of impeller outlet under low flow resistance is acquired. As for the natural circulation loss of static parts, the optimal design interval of guide vane inlet angle and outlet angle with low flow resistance is obtained by analyzing the EHDF distribution diagram of the whole flow parts, which accounts for the position and reason of resistance. In this paper, the mechanism between runaway speed and loss coefficient curve is revealed and the resistance is optimized through the design and analysis of the RSI region, which provides theoretical methods for the analysis of the impeller performance of axial-flow circulating pump. Furthermore, it is a reference for the optimization design of natural circulation system.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering

Reference31 articles.

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