Deterministic simulation of the static neutronic characteristics for the lead core of VENUS-II facility

2019 ◽  
Vol 353 ◽  
pp. 110258
Author(s):  
Lu Zhang ◽  
Yongwei Yang ◽  
Fei Ma ◽  
Qi Zhou ◽  
Long Gu ◽  
...  
Forests ◽  
2019 ◽  
Vol 10 (9) ◽  
pp. 822
Author(s):  
Yoshida ◽  
Takata

Managing uncertainty is the way to secure stability of the supply chain. Uncertainty within chipping operation and chip transportation causes production loss. In the wood chip supply chain for bioenergy, operational uncertainty mainly appears in the moisture content of the material, chipping productivity, and the interval of truck arrival. This study theoretically quantified the loss in wood chip production by applying queuing theory and stochastic modelling. As well as the loss in production, the inefficiency was identified as the idling time of chipper and the queuing time of trucks. The aim of this study is to quantify the influence of three uncertainties on wood chip production. This study simulated the daily chip production using a mobile chipper by applying queuing theory and stochastic modelling of three uncertainties. The result was compared with the result of deterministic simulation which did not consider uncertainty. Uncertainty reduced the production by 14% to 27% compared to the production of deterministic simulation. There were trucks scheduled but not used. The cases using small trucks show the largest daily production amount, but their lead time was the longest. The large truck was sensitive to the moisture content of material because of the balance between payload and volumetric capacity. This simulation method can present a possible loss in production amount and enables to evaluate some ways for the loss compensation quantitatively such as outsourcing or storing buffer. For further development, the data about the interval of truck arrival should be collected from fields and analyzed. We must include the other uncertainties causing technical and operator delays.


2009 ◽  
pp. 182-183
Author(s):  
Shangwu Xiong ◽  
Jane Q. Wang ◽  
Chih Lin ◽  
Yansong Wang

2021 ◽  
Author(s):  
A. Khakim ◽  
F. Rhoma ◽  
A. Waluyo ◽  
S. Suharyana

2017 ◽  
Vol 22 (8) ◽  
pp. 04017026 ◽  
Author(s):  
Mahesh L. Maskey ◽  
Carlos E. Puente ◽  
Bellie Sivakumar ◽  
Andrea Cortis

Author(s):  
N. Kodochigov ◽  
Yu. Sukharev ◽  
E. Marova ◽  
N. Ponomarev-Stepnoy ◽  
E. Glushkov ◽  
...  

The GT-MHR reactor core is characterized by flexibility of neutronic characteristics at the given average power density and fixed geometrical dimensions of reactor core. Such flexibility makes it possible to start the reactor operation with one fuel cycle, and then to turn to another type of core fuel load without changes of main reactor elements: fuel block design, core and reflector size, control rod number etc. Preliminary analysis reindicates the commercial viability of the GT-MHR, part of which is due to the ability to accommodate different fuel types and cycles. This paper presents the results of studies of the neutronic characteristics of reactor cores using different fuel (low- and high-enriched uranium, MOX fuel). Comparison of different fuel cycles is carried out for a three-batch refueling option with respect to following characteristics: discharged fuel burnup, reactivity change during one partial cycle of fuel burnup, consumption of fissile isotopes per unit of produced energy, power distribution, reactivity effects, control rods worth. It is shown, that the considered options of fuel loads provide the three-year fuel campaign (with accounting of capacity factor ∼ 0,8) without change of core design, number and design of control rods at transition from the one fuel type to another.


1999 ◽  
Vol 35 (1T) ◽  
pp. 228-232 ◽  
Author(s):  
B.V. Robouch (guest) ◽  
V.I. Volosov ◽  
A.A. Ivanov ◽  
Yu.A. Tsidulko ◽  
L. Ingrosso ◽  
...  

IEEE Access ◽  
2018 ◽  
Vol 6 ◽  
pp. 21991-22010 ◽  
Author(s):  
Chong Shum ◽  
Wing-Hong Lau ◽  
Tian Mao ◽  
Henry Shu-Hung Chung ◽  
Norman Chung-Fai Tse ◽  
...  

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