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1.
液态锂铅合金鼓泡器是中国双功能液态锂铅测试包层氚处理单元的重要组成部分。为了完成鼓泡器实验系统的建造与运行,在多年开展氢同位素与锂铅合金相互作用的理论计算和旋转喷嘴鼓泡法提取液态锂铅中微量氢实验的基础上,提出了实验系统的总体设计、主回路设计和辅助系统设计。这个设计以气液交换填料塔为核心,实现了液态锂铅中氢同位素的测量与提取。  相似文献   

2.
模拟了锂铅合金中氚提取技术,在采用流体力学建立代数模型的基础上,开展了旋转喷嘴鼓泡法提取锂铅合金中氢的研究。研究结果表明:锂铅熔融温度越高,氢提取累计效率越高;鼓泡床气含率受叶轮孔径影响不大,只是在较高的氦气流速下,采用小孔径时的气含率略高于大孔径,但孔径越小,气泡比表面积越大;随着氦气流速的增加,液态锂铅流循环强度明显增加,氢提取速率加快;喷头转速对氢提取影响有限。  相似文献   

3.
模拟了锂铅合金中氚提取技术,在采用流体力学建立代数模型的基础上,开展了旋转喷嘴鼓泡法提取锂铅合金中氢的研究。研究结果表明:锂铅熔融温度越高,氢提取累计效率越高;鼓泡床气含率受叶轮孔径影响不大,只是在较高的氦气流速下,采用小孔径时的气含率略高于大孔径,但孔径越小,气泡比表面积越大;随着氦气流速的增加,液态锂铅流循环强度明显增加,氢提取速率加快;喷头转速对氢提取影响有限。  相似文献   

4.
在气-液接触法提取液态锂合金中的氢的实验基础上,提出了以气-液交换柱为核心的提氚鼓泡器(LBTB)的概念设计。LBTB 主要由气体进样纯化器、气-液交换柱系统、饱和器-解吸器和辅助系统构成。LBTB以氩氢混合气为吹洗气,其主要功能是在线监测液态包层主回路中的氚行为,并检验多柱级联后的氚回收率是否可以达到90%的期望值。  相似文献   

5.
在气-液接触法提取液态锂合金中的氢的实验基础上,提出了以气-液交换柱为核心的提氚鼓泡器(LBTB)的概念设计。LBTB 主要由气体进样纯化器、气-液交换柱系统、饱和器-解吸器和辅助系统构成。LBTB以氩氢混合气为吹洗气,其主要功能是在线监测液态包层主回路中的氚行为,并检验多柱级联后的氚回收率是否可以达到90%的期望值。  相似文献   

6.
规则结构多孔填料塔两相流动特性实验研究   总被引:1,自引:0,他引:1  
本文以空气和水为工质,对规则结构多孔填料塔的气-液逆向流动特性进行了可视化实验,研究了填料塔内气一液两相流动规律.实验结果表明:当液体流量一定时,随着气体流量的增加,压力损失增大;当气体流量一定时,随着液体流量的增加,气相压力损失增加.根据实验结果提出了采用水力雷诺数、韦伯数和无量纲流动参数的填料塔内气-液两相流动阻力系数实验关联式.  相似文献   

7.
采用三维计算流体动力学(CFD)方法对聚变堆液态包层增殖区高温液态铅锂与结构内高压氦气耦合换热进行数值模拟。建立了充放式高压氦气回路和换热实验段,开展了包层典型工况下液态铅锂与氦气多流场耦合换热对比实验验证。研究了氦气压力和增殖区铅锂入口温度、核热功率密度变化时的流动与传热特性及其影响规律,获得了氦气与RAFM钢壁面、液态铅锂与RAFM钢壁面之间的换热系数和换热关联式,为液态包层的设计研发提供了参考依据。  相似文献   

8.
在对国内外液态锂回路研究综述的基础上,重点介绍了四川大学流动液态锂回路的研究进展。为开展等离子体与流动自由液态锂表面相互作用的研究而设计了该回路,其目标是:(1) 获得稳定、均匀的流动自由液态锂表面;(2) 研究等离子体辐照下液态锂的蒸发、溅射以及氢、氢同位素和氦在液态锂中的滞留行为;(3) 研究等离子体辐照下液态锂与结构材料的相容性。系统包括液态锂循环部分和直线高密度等离子体发生装置。  相似文献   

9.
在对国内外液态锂回路研究综述的基础上,重点介绍了四川大学流动液态锂回路的研究进展。为开展等离子体与流动自由液态锂表面相互作用的研究而设计了该回路,其目标是:(1)获得稳定、均匀的流动自由液态锂表面;(2)研究等离子体辐照下液态锂的蒸发、溅射以及氢、氢同位素和氦在液态锂中的滞留行为;(3)研究等离子体辐照下液态锂与结构材料的相容性。系统包括液态锂循环部分和直线高密度等离子体发生装置。  相似文献   

10.
应用商业软件ANSYS CFX 计算了等离子体热通量和液态锂流速对自由流动液态锂温度分布的影响。计算结果表明,导向槽中心附近液态锂温度较高,冷却水入口和出口对应位置液态锂温度最低。液态锂出口温度随着等离子体热通量的增大而线性升高,冷却水流速为1.5m·s−1,热通量分别为0.1MW·m−2 和1MW·m−2 时,液态锂在出口处对应的温度分别为255.3°C 和458.6°C。增大液态锂流速,导向槽内液态锂的温度逐渐降低,但温度变化的幅度较小。计算结果对液态锂回路安全稳定运行提供了一定参考。  相似文献   

11.
The lattice Boltzmann method for two-phase fluid flows is applied to the simulations of gas-liquid two-phase flows in a micro porous structure for various capillary numbers at low Reynolds numbers. The behaviors of the gas-liquid interface and the velocities of the two-phase fluid in the structure are simulated, and the permeability of gas and liquid through the structure are estimated from the calculated results. By changing the void fraction, the contact angle of the interface on walls, and the surface tension, the effect of these properties on the behaviors and the permeability of the two-phase flows in the micro porous structure is investigated. It is found that the permeability of liquid flows depends on the contact angle and it increases for hydrophobic walls. It is also seen that liquid flows are choked in pores for large void fractions and low capillary numbers.  相似文献   

12.
由于锂铅合金因具有高增殖比、低活泼性和可能作为冷却剂的特点,被认为是最有潜力的能源堆包层氚增殖材料。在理论模型描述熔融锂铅合金氚释放行为的基础上,开展了中子辐照后Li17Pb83合金的离线氚释放实验。结果表明: 释放氚的化学形式99%以上为难溶于水的成分(HT或T2); 氚滞留时间随载气中氢分压的增加而减小,氢分压达到1000 Pa后变为常数,且与实体积无关;氚释放速率对温度的依赖性符合Arrhenius定律。以此为基础得到的氚在熔融锂铅中的动力学参数结果,虽与文献值有差异,但同样证明了在633—973 K的范围内, 氚从液态锂铅到气相的整个释放过程中起决定作用的是氚在合金内的扩散和气\|液界面的多相反应重组。Lithium\|lead alloy is considered to be one of the most prominent tritium breeding materials for the fusion reactor blanket because of its high breeding ratio, and low reactivity and possible use as coolant. An out\|of\|pile experiment of tritium release from Li17Pb83 alloy was performed after neutron irradiation on the base of mathematical model to describe tritium release behavior from an eutectic lithium\|lead alloy. The results suggest that the dominant chemical form of the released tritium (>99%) was the water\| insoluble component (HT or T2). Tritium residence time decreased with increasing H2pressure in carrier gas up to 1000 Pa, and above this concentration limit it became constant and not influenced by the plenum volume. The temperature dependence of the tritium release rate can be described by an Arrhenius law. Consequently, the present results on the kinetic parameters of tritium in molten Li17Pb83alloy are considered to be different from the values in literature, but it is the same that the overall release process is governed by the diffusion of tritium atoms in the Li17Pb83and by the heterogeneous reaction at the gas\|eutectic interface of the tritium atom recombination at temperatures from 633 to 973 K.  相似文献   

13.
Accurately quantitative determination of oil content in oilseed rape plays an important role in varieties breeding for improving oil content in seeds. However, large quantity of oilseeds were needed in order to obtain accuracy and precision results by using standard Soxhlet extraction method, which may be a handicap in analysis of small, rare and precious samples in plant breeding. In the present work, ultrasound-assisted extraction was evaluated as a simpler and more effective alternative to conventional extraction method for the isolation of oil from small quantity of oilseed rape (<20 mg). The oil of oilseed rape samples was extracted by ultrasound-assisted method, and then the fatty acids and total oil content of the seeds were qualitatively and quantitatively determined by gas chromatography (GC). Extraction efficiency of total oil obtained by ultrasound-assisted extraction through an orthogonal experiment (L(9) (3(4))) were investigated to get the best extraction conditions. Statistical analysis showed that the variable with the largest effect was the ultrasound-assisted extraction time which was followed by the ultrasound-assisted extraction power, and the liquid:solid ratio. A liquid:solid ratio of 1:4 (L:g), an ultrasound-assisted extraction time of 60 min and an ultrasound-assisted extraction power of 500 W were found to be optimal for oil extraction from oilseed rape. By comparing with the conventional method, it was found that the ultrasound-assisted extraction of oil from oilseed rape was about five times faster than the traditional extraction method. By the use of ultrasound-assisted extraction combined with GC analysis, the fatty acids and total oil content in small quantity of seeds (<20 mg) were successfully qualitatively determined and the results are in agreement with that obtained by traditional standard method.  相似文献   

14.
The influence of carbon content on the crystallization process has been investigated for the excimer laser annealed hydrogenated amorphous silicon carbon alloy films deposited by Plasma Enhanced Chemical Vapour Deposition (PECVD) technique, using silane methane gas mixture diluted in helium, as well as for the hydrogenated microcrystalline silicon carbon alloy films prepared by PECVD from silane methane gas mixture highly diluted in hydrogen, for comparison. The study demonstrates clearly that the increase in the carbon content prevents the crystallization process in the hydrogen diluted samples while the crystallization process is enhanced in the laser annealing of amorphous samples because of the increase in the absorbed laser energy density that occurs for the amorphous films with the higher carbon content. This, in turn, facilitates the crystallization for the laser annealed samples with higher carbon content, resulting in the formation of SiC crystallites along with Si crystallites.  相似文献   

15.
Contact angle measurements in controlled atmospheres must take into account the effect of residual gas molecules in the less-than-perfect vacuum that is encountered experimentally and of the gas molecules formed by vaporization of the liquid component. The possibility of measuring the contact angle of a non-vaporizing liquid has been considered. In an experiment with a low-melting lead bismuth alloy on glass, the contact angle at 142°C was 136°. Calculations based on the Fowkes theory of dispersion forces indicate that the contact angle should not exceed 141°. In contrast to the reasonable agreement with the Fowkes theory, the observed angle is lower than would be expected from the Yarnold-Mason theory as it would apply to a competition between residual gas molecules and metal atoms for the solid surface and the effect of this competition on the contact angle. Finally, the theory of works of adhesion and cohesion is applied to the known variability of the hydrophilicity of graphite surfaces. The known reactivity of adsorbed water with graphite makes it impossible to apply an exact theory, but a limiting value of 53 % hydrophilic surface is indicated for graphite at room temperature.  相似文献   

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