混合堆,Hybrid reactor
1)Hybrid reactor混合堆
1.In this paper the power flow, tritium and plutonium fuel cycle and the possibility of earlier application of the hybrid reactor as fusion energy source have been introduce briefly.对惯性约束混合堆的功率循环,氚钚生产的燃料循环和混合堆作为聚变能源的前期应用的可能性作了简要的介绍。
2.The preliminary studies on the fusion-fission hybrid reactor were performed with the MCNP5 and MONK9A codes.利用MCNP5和MONK9A程序对聚变驱动裂变混合堆进行了初步研究,在等离子体第1壁外侧依次包覆长方体形状的燃料组件和产氚组件,形成裂变堆芯包层和产氚区。
3.Thus helium,water and Flibe were proposed as candidate of coolant for fusion-fission hybrid reactor based on magnetic confinement.氦气、水、熔盐(Flibe)在强磁场中流动不存在严重的MHD问题,因此适合在基于磁约束的聚变-裂变混合堆中作为冷却剂。
英文短句/例句

1.The hybrid breeders can provide plenty of fissile material for PWR or FBR.聚变-裂变混合堆可以为压水堆或快堆提供充足的核燃料。
2.Technical study of mixed pond for red mud from Bayer process and red mud from sintering process拜耳法赤泥与烧结法赤泥混合堆坝的技术研究
3.Research of Aerobic Co-composting of Low Concentration Chromium-Contaminated Soil and Food Wastes低浓度铬污染土壤与餐厨垃圾混合堆肥研究
4.Studies and Design of the Fast Zone Assembly in SCWR Mixed Core超临界水冷混合堆快谱组件研究与设计
5.Stench Pretreatment of Nightsoil/waste Composting by Condensation垃圾粪便混合堆肥恶臭的凝结法预处理
6.Neutronics Study on Hybrid Reactor Cooled by Helium,Water and Molten Salt氦气、水和熔盐冷却的混合堆中子学性能研究
7.Neutron Physical Characteristics of Light Water Cooled Blanket of Fusion-Fission Hybrid Reactor聚变-裂变混合堆水冷包层中子物理性能研究
8.Compost Mixed with Domestic Refuse and Municipal Sludge by R-SACT Technology生活垃圾与市政污泥R-SACT混合堆肥技术
9.A neutron-kinetics/thermal-hydraulics analysis of the fast zone assembly in the SCWR mixed core超临界水冷混合堆快谱区组件物理——热工分析
10.Neutron-Kinetics/Thermal-Hydraulics Performance Analysis of Fast Zone Assembly in Supercritical Water Reactor Mixed Core超临界水混合堆快谱区组件物理-热工性能分析
11.The Substance Changes During the Composting of Cow Dung and Envelope Splits of Chestnut板栗苞和牛粪混合堆肥的物质变化特性研究
12.Effects of complex microbial agents to mixed compost with cattle manure and chicken manure on organic nitrogen at low temperature低温下复合发酵剂对牛粪与鸡粪混合堆肥有机氮变化的影响
13.An accumulation of miscellaneous things.混合成团混杂物的堆积
14.fusion hybrid breeder reactor聚变混合增殖反应堆
15.hybrid fusion reactor blanket混合式聚变反应堆包层
16.fusion fission hybrid reactor核聚变裂变混合反应堆
17.Coupled Thermal-Hydraulics and Neutron-Physics Analysis of Supercritical Water Cooled Reactor With Mixed Spectrum Core混合能谱超临界水堆堆芯热工-物理性能分析
18.linear theta pinch hybrid reactor直线角向箍缩混合式反应堆
相关短句/例句

Co-composting混合堆肥
1.Effect of ventilation rate on vegetable waste and flower straw co-composting;通风量对蔬菜和花卉废弃物混合堆肥的影响
2.A co-composting system was set up to study the characteristics of the mixed composting of vegetable wastes and flower stalks.利用小型堆肥反应器 ,以蔬菜和花卉秸秆为堆肥生料 ,研究了蔬菜 花卉秸秆混合堆肥体系的动力学特征。
3)mixing compost混合堆肥
1.The impact of night soil on waste compost was discussed based on mixing compost experiment of night soil and household waste.通过粪便与生活垃圾混合堆肥的试验,探讨了粪便对垃圾堆肥过程的影响,试验结果表明,粪便混合堆肥可大大提高有机物降解速率和堆肥效率,垃圾腐熟时间可缩短16~20d。
2.For the purpose of making settled sludge in septic tank and domestic refuse resourselized, the aerobic biological ferment in two stages is used as mixing compost of settled sludge in septic tank and domestic refuse.为使粪泥与生活垃圾两种废物资源化,采用二次好氧生物发酵法,将它们作混合堆肥处理。
4)co composting混合堆肥
1.The experiment of co composting of sewage sludge and pig manure was studied.由城市污泥、猪粪混合堆肥试验表明 :升温期堆体各剖面的湿度在 5 0 82 %~ 6 0 87%之间 ,高温期在 38 7%~ 5 2 17%之间 ;升温期和高温期堆体中湿度的层次效应不明显 ,堆肥仓门、仓内壁以及堆体深度对湿度层次效应的影响较小 ;降温期堆体各剖面的湿度在 2 4 5 4 %~ 4 9 39%之间 ,湿度层次效应非常明显 ,仓门、仓内壁和堆体深度对湿度层次效应产生明显影响 ;后熟期堆体各剖面的湿度在 19 18%~ 4 9 34%之间 ,湿度层次效应相对减弱 ,仓门和仓内壁是导致湿度层次效应减弱的重要原因 。
5)Mixed core混合堆芯
1.Mixed core compatibility is one of important issues affecting the nuclear safety and the reliable generation of a Nuclear Power Plant.混合堆芯的热工水力设计是一项关系到核安全和可靠生产的重要内容。
6)hybrid stack混合堆栈
1.This paper summarizes some benefits about IPv6 and analyzes several transition tools of transitioning IPv4 to IPv6 such as hybrid stack, tunnels and NAT PT.文章对混合堆栈机制、隧道技术以及 NAT- PT等实现 IPv6的工具进行了分析 。
延伸阅读

核聚变-裂变混合堆核聚变-裂变混合堆nuclear fussion-fission hy-brid hejubian一liebian hunhedui核聚变一裂变混合堆(nudear fussion一fission场-brid)聚变堆芯外包裂变层的装置。利用一些聚变反应产生的高能中子,使其包层中的核素牡一232,铀一238嫂变为易裂变核素铀一233、怀一239,同时也会发生一部分裂变倍增能量,因此聚变一裂变混合堆是聚变一裂变共生系统。从能量得失来看,聚变一裂变混合堆利用裂变倍增了聚变能,其值可达一个数量级。因此聚变堆芯只要接近或达到能量得失相当,就有可能建造有实用意义的混合堆。当前一些大型托卡马克装置已达到混合堆的聚变堆芯要求,而裂变是成熟技术。因此,聚变一裂变混合堆是纯聚变堆商用的过渡堆型。在混合堆中,聚变是要不断加料才得以维持,而裂变处于次临界状态,对裂变核素无特殊要求,也不存在超临界等安全问题。 在结构上,纯聚变堆也有包层以保护一些部件,并生产所需的氖燃料。混合堆中仅在包层中加裂变核素以倍增能量,也增殖了产氖中子,不影响氖的生产。(年大雄)