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从液晶显示到液晶生物膜理论: 软凝聚态物理在交叉学科发展中的创新机遇 被引量:5
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作者 欧阳钟灿 《物理》 CAS 1999年第1期15-21,共7页
世纪之交,物理学正在与化学、材料科学、生命科学等相互交叉形成新的学科.以凝聚态物理为例,在传统的固体物理以外,最近几年又诞生了一门新学科———软体物理,或称为复杂流体.液晶是软物质凝聚态的重要研究对象,60年代发展起... 世纪之交,物理学正在与化学、材料科学、生命科学等相互交叉形成新的学科.以凝聚态物理为例,在传统的固体物理以外,最近几年又诞生了一门新学科———软体物理,或称为复杂流体.液晶是软物质凝聚态的重要研究对象,60年代发展起来的液晶显示技术与70年代创立的液晶生物膜理论,充分显示了软凝聚态物理在21世纪的信息与生命科学时代仍然将发挥重要的基础学科作用,是科学技术富于创新发展的领域. 展开更多
关键词 液晶 生物膜 软体物理
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Closed recirculating system for shrimp-mollusk polyculture 被引量:1
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作者 吴雄飞 赵志东 +5 位作者 李德尚 常抗美 童转尚 斯烈刚 徐开崇 葛柏林 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2005年第4期461-468,共8页
This paper deals with a new system of aquaculture, i.e., a closed recirculating system for shrimp-mollusk polyculture. The culture system consisted of several shrimp ponds, a mollusk water-purifying pond and a reservo... This paper deals with a new system of aquaculture, i.e., a closed recirculating system for shrimp-mollusk polyculture. The culture system consisted of several shrimp ponds, a mollusk water-purifying pond and a reservoir. During the production cycle, water circulated between the shrimp and mollusk ponds, and the reservoir compensated for water loss from seepage and evaporation. Constricted tagelus, Sinonovacula con- stricta, was selected as the cultured mollusk, and Pacific white shrimp, Litopenaeus vannamei, as the cultured shrimp. The main managing measures during the production cycle were: setting and using the aerators; introduc- ing the probiotic products timely into the shrimp ponds; adopting a "pen-closing" method for controlling shrimp viral epidemics; setting the flow diversion barriers in the mollusk pond to keep the circulating water flowing through the pond along a sine-like curve and serve as substrate for biofilm; no direct feeding was necessary for the cultured mollusk until the co-cultured shrimp was harvested; natural foods in the water from the shrimp ponds was used for their foods. Two sets of the system were used in the experiment in 2002 and satisfactory re- sults were achieved. The average yield of the shrimp was 11 943.5 kg/hm2, and that of the mollusk was 16 965 kg/hm2. After converting the mollusk yield into shrimp yield at their market price ratio, the food coefficient of the entire system averaged at as low as 0.81. The water quality in the ponds was maintained at a desirable level and no viral epidemics were discovered during the production cycle. 展开更多
关键词 closed-recirculating system POLYCULTURE Litopenaeus vannamei Sinonovacula constricta
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CFD prediction of physical field for multi-air channel pulverized coal burner in rotary kiln 被引量:8
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作者 马爱纯 周孑民 +1 位作者 欧俭平 李旺兴 《Journal of Central South University of Technology》 EI 2006年第1期75-79,共5页
A 3-D numerical simulation with CFX software on physical field of multi-air channel coal burner in rotary kiln was carried out. The effects of various operational and structural parameters on flame feature and tempera... A 3-D numerical simulation with CFX software on physical field of multi-air channel coal burner in rotary kiln was carried out. The effects of various operational and structural parameters on flame feature and temperature distribution were investigated. A thermal measurement was conducted on a rotary kiln (4.5m in diameter, 90m in length) with four-air channel coal burner to determine the boundary conditions and to verify the simulation results. The calculation result shows that the distribution of velocity near burner exit is saddle-like; recirculation zones near nozzle and wall are useful for mixture primary air with coal and high temperature fume. A little central airflow can avoid coal backing up and cool nozzle. Adjusting the ratio of internal airflow to outer airflow is an effective and major means to regulate flame and temperature distribution in sintering region. Large whirlcone angle can intensify disturbution range at flame root to accelerate ignition and mixture. Large coal size can reduce high temperature region and result in coal combusting insufficiently. Too much combustion air will lengthen flame and increase heat loss. 展开更多
关键词 CFD numerical simulation CFX physical field multi-air channel coal burner rotary kiln
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