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A preliminary study of 3D difference scheme with energy dynamic equilibrium 被引量:1
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作者 ChipingWu YongxingZhang +3 位作者 ZhongzhenJi WenxingSun ZedeGuo WeipingJin 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2005年第2期121-128,共8页
In this paper, a difference scheme with energy dynamic equilibrium (DS-EDE) is presented, which can be used for the simulation of long-term atmosphere and sea motion. Based on three dimensional nonlinear evolution equ... In this paper, a difference scheme with energy dynamic equilibrium (DS-EDE) is presented, which can be used for the simulation of long-term atmosphere and sea motion. Based on three dimensional nonlinear evolution equations for atmosphere and sea motion, a three dimensional compact upwind scheme (CUWS) is constructed, as the basis of the DS-EDE. The DS-EDE satisfies the following condition of energy dynamic equilibrium (EDE): the total work of external forces on the region boundary is equal to the sum of the total effective variation of the kinetic energy and the energy dissipation in the average flow motion and the effective variation of the potential energy per unit time within the region of interest. It really reflects the basic mechanism of the action of external forces and dissipation in atmosphere and sea movement. Therefore, the DS-EDE developed in this paper is a suitable model for simulating long-term atmosphere and sea movement with forcing and dissipation. 展开更多
关键词 3D nonlinear evolution equation with forcing-and-dissipation Energy dynamic equilibrium Long-term numerical simulation
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STUDY ON LUNG DOSE FOR DIFFERENT ANIMALS BY INHALATION OF SHORT-LIVED RADON DAUGHTERS
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作者 李素云 张升慧 侯海全 《Nuclear Science and Techniques》 SCIE CAS CSCD 1994年第3期149-153,共5页
The dose distribution in the lung is inhomogeneous. The dose to the hasal cell layer of trachea and main bronchi is much higher than the dose to total lung both for rabbits at different ages and for different animals.... The dose distribution in the lung is inhomogeneous. The dose to the hasal cell layer of trachea and main bronchi is much higher than the dose to total lung both for rabbits at different ages and for different animals. A maximum value of the dose to lung tissue for rabbits at ages of 20-40d is observed. The dose decreases with increasing body weight. The relationship between the dose and body weight can be described by a power function. The dose to total lung increases exponentially with the minute breathing volume per unit of lung weight. 展开更多
关键词 Lung dose Radon daughters INHALATION ANIMALS
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DISCUSSION ON DECISION LIMIT AND DETECTION LIMIT IN SPECTROSCOPY
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作者 郑仁圻 余君岳 杨健明 《Nuclear Science and Techniques》 SCIE CAS CSCD 1995年第1期61-64,共4页
Based on fundamental arguments, the expressions for the decision limit and the detection limit both in the count domain and in the count rate domain are derived.These expressions are found to be different from those s... Based on fundamental arguments, the expressions for the decision limit and the detection limit both in the count domain and in the count rate domain are derived.These expressions are found to be different from those shown in the existing literature. 展开更多
关键词 Decision limit Detection limit SPECTROSCOPY Modifications
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THM Coupled Modeling in Near Field of an Assumed HLW Deep Geological Disposal Repository
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作者 ShenZhenyao LiGuoding LiShushen 《Journal of China University of Geosciences》 SCIE CSCD 2004年第4期388-394,共7页
One of the most suitable ways under study for the disposal of high-level radioactive waste (HLW) is isolation in deep geological repositories. It is very important to research the thermo-hydro- mechanical (THM) coupl... One of the most suitable ways under study for the disposal of high-level radioactive waste (HLW) is isolation in deep geological repositories. It is very important to research the thermo-hydro- mechanical (THM) coupled processes associated with an HLW disposal repository. Non-linear coupled equations, which are used to describe the THM coupled process and are suited to saturated-unsaturated porous media, are presented in this paper. A numerical method to solve these equations is put forward, and a finite element code is developed. This code is suited to the plane strain or axis-symmetry problem. Then this code is used to simulate the THM coupled process in the near field of an ideal disposal repository. The temperature vs. time, hydraulic head vs. time and stress vs. time results show that, in this assumed condition, the impact of temperature is very long (over 10 000 a) and the impact of the water head is short (about 90 d). Since the stress is induced by temperature and hydraulic head in this condition, the impact time of stress is the same as that of temperature. The results show that THM coupled processes are very important in the safety analysis of an HLW deep geological disposal repository. 展开更多
关键词 HLW disposal thermo-hydro-mechanical (THM) coupled equations modeling.
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