scholarly journals Study of Clogging Phenomenon for a Conical Hopper: The Influence of Particle Bed Height and Hopper Angle

2021 ◽  
Vol 2021 ◽  
pp. 1-10
Author(s):  
Muhammad Hammad Khalid ◽  
Yixian Zhou

The granular flow is one of the principal issues for the design of pebble bed reactors. Particularly, the clogging phenomenon raises an important issue for pebble bed reactors. In this paper, we conduct experiments and discrete particle simulation of two-dimensional discharge granular flow from a conical hopper, to study the effect of the particle bed height h and hopper angle α on the clogging phenomenon. In general, the clogging probability J increases with height h and starts to saturate when h is larger than a critical value. The experimental result trends are supported by discrete simulations. To understand the underlying physical mechanism, we conduct discrete particle simulations for various h values, focusing on the following parameters: the statistical averaging of the volume fraction, velocity, and contact pressure of particles near the aperture during the discharge. We found that, among all relevant variables, the contact pressure of particles is the main cause of the increasement of J when h increases. An exponential law between the pebble bed h and clogging probability J has been established based on these observations and Janssen model. As for hopper angle α , J shows an almost constant behavior for any rise in α followed by a sudden regression at α = 75 ° . Surprisingly, the effect of α is most obvious for intermediate values of h , where we observe a sharp increasement of clogging probability. The same trend is observed in the two-dimensional discrete simulation results.

Author(s):  
Li Shuo ◽  
Cheng Songbai ◽  
Li Kejia ◽  
Lin Shaopeng ◽  
Zhang Nan

Studies on the pool sloshing behavior are of crucial importance for the improved assessment of energetic potential of a large whole-core-scale molten fuel pool that might be formed in the transition phase of a Core Disruptive Accident (CDA) of Sodium-cooled Fast Reactors (SFR). In this work, to clarify the mechanisms underlying this behavior, a series of simulated experiments was performed by injecting nitrogen gas into a two-dimensional rectangular water pool from a nozzle positioned at the center of pool bottom. To achieve a comprehensive understanding, various experimental parameters, including the nitrogen gas pressure, nozzle size, initial water depth, as well as the initial particle bed height, particle size, particle density and the particle shape, have been planned. From the preliminary analyses, it is found that the gas pressure, initial water depth and particle bed height are observable to have a remarkable impact on the sloshing characteristics (e.g. maximum magnitude of water level in the center and peripheries of water pool). Due to a much-reduced residence time of the injected gas in the pool, mitigation effect of gas pressure, which could restrain the intensity of sloshing motion in the fuel pool, is observable. However, as to the sloshing motion with a certain kind of particles, as the initial particle bed height increases, the intensity of sloshing motion is confirmable to become stronger and stronger. Knowledge and fundamental data from this work might be utilized for the predicative-model studies as well as verifications of SFR severe accident analysis codes in China in the future.


2014 ◽  
Vol 580-583 ◽  
pp. 3208-3214 ◽  
Author(s):  
Zhen Wei Xiong ◽  
Xin Ling Liang ◽  
Xian Xing Dai ◽  
Ping Wang

when the ballast track stretch with the bridge, ballast which is near expansion joint will move confusedly. As a result, rail produced vertical deformation. The deformation will affect the running safety and comfortability of train. At present, there are two kinds of treatments which are cover board structure and baffle structure to deal ballast’s movement. Aiming at the different modes of stretching when the two kinds of structures and different arrangement condition of bridge plate are applied, the rail-sleeper-ballast discrete element model is developed by the method of two-dimensional granular flow. The relationship between rail deformation and bridge expansion is analyzed on the foundation of the model. Results show as flows: when bridge extends or shortens, rail always produced upwarp deformation. Bridge plate should arrange asymmetrically. Like this, the rail deformation decrease by 40%. And adopting the baffle structure can effectively reduce the influence of bridge expansion in ballast truck.


Author(s):  
Yumi Yamada ◽  
Toyou Akashi ◽  
Minoru Takahashi

In a lead-bismuth alloy (45%Pb-55%Bi) cooled direct contact boiling water fast reactor (PBWFR), steam can be produced by direct contact of feed water with primary Pb-Bi coolant in the upper core plenum, and Pb-Bi coolant can be circulated by buoyancy forces of steam bubbles. As a basic study to investigate the two-phase flow characteristics in the chimneys of PBWFR, a two-dimensional two-phase flow was simulated by injecting argon gas into Pb-Bi pool in a rectangular vessel (400mm in length, 1500mm in height, 50mm in width), and bubble behaviors were investigated experimentally. Bubble sizes, bubble rising velocities and void fractions were measured using void probes. Argon gas was injected through five nozzles of 4mm in diameter into Pb-Bi at two locations. The experimental conditions are the pressure of atmospheric pressure, Pb-Bi temperatures of 443K, and the flow rate of injection Ar gas is 10, 20, and 30 NL/min. The measured bubble rising velocities were distributed in the range from 1 to 3 m/s. The average velocity was about 0.6 m/s. The measured bubble chord lengths were distributed from 1mm up to 30mm. The average chord length was about 7mm. An analysis was performed by two-dimensional and two-fluid model. The experimental results were compared with the analytical results to evaluate the validity of the analytical model. Although large diameter bubbles were observed in the experiment, the drag force model for spherical bubbles performed better for simulation of the experimental result because of high surface tension force of Pb-Bi.


2015 ◽  
Vol 52 (7-8) ◽  
pp. 932-944 ◽  
Author(s):  
Maurice Grimod ◽  
Richard Sanchez ◽  
Frédéric Damian

2004 ◽  
Vol 53 (10) ◽  
pp. 3389
Author(s):  
Zhou Ying ◽  
Bao De-Song ◽  
Zhang Xun-Sheng ◽  
Lei Zhe-Min ◽  
Hu Guo-Qi ◽  
...  

2020 ◽  
Author(s):  
Donald N. Kovacic ◽  
Philip Gibbs ◽  
Logan Scott

2009 ◽  
Vol 36 (8) ◽  
pp. 1049-1058 ◽  
Author(s):  
B. Boer ◽  
J.L. Kloosterman ◽  
D. Lathouwers ◽  
T.H.J.J. van der Hagen

2011 ◽  
Vol 38 (1) ◽  
pp. 80-87 ◽  
Author(s):  
Ramatsemela Mphahlele ◽  
Abderrafi M. Ougouag ◽  
Kostadin N. Ivanov ◽  
Hans D. Gougar

Sign in / Sign up

Export Citation Format

Share Document