1)  rotary speed
旋管转速
1.
Firstly, increasing the rotary speed and axial velocity or decreasing the gap width, the movement of the particles would be enhanced.
在不同操作条件下,旋管转速对过滤速度的影响截然不同。
2)  Rotary Cylinder
旋管
1.
A Review of Rotary Cylinder Filtration;
旋管动态过滤的研究进展
3)  rotary cylinder filtration
旋管过滤
1.
In the rotary cylinder filtration, particles on the surface of the cake were controlled mainly by three forces: centrifugal force, deposition force and tangential torque.
通过分析滤饼表层颗粒的受力,揭示了旋管过滤中旋管转速、滤室间隙等参数对颗粒沉积规律的影响,并以物料试验对其进行验证。
4)  helically coiled tube
螺旋管
1.
The phase separation phenomena in helically coiled tube multiphase flow is substantial to design innovative curved pipe separator.
为了深入认识螺旋管多相流相分离现象,并为新型螺旋管除砂器设计提供指导,本文应用马尔文粒度仪,测量了螺旋管气水砂三相流底部水平段液膜中的颗粒浓度和粒度分布。
2.
An experimental investigation is described of the characteristics of pressure drop oscil-lations in helically coiled tubes using a steamuswater two-phase flow closed circulation testloop at pressure from 0.
本又根据闭式循环热动力推进系统中锅炉反应器的各种可能的航行方向及运行参数,对螺旋管内汽液两相流压力降脉动特性进行了系统的试验研究,首次区分了两类不同特征的压力降脉动并得到了各主要因素的影响现律和发生脉动的界限准则。
3.
In this paper, an experimental and theoretical investigation on the characteristics of factional pressure losses of steam - water two - phase flow in helically coiled tubes was conducted in a wide range of system and flow parameters, which are as follows: system pressure p =0.
在宽广的参数范围内试验研究了螺旋管在不同倾角放置时的单相及汽液两相摩擦阻力特性,获得了螺旋管放置方向及各主要系统参数对汽液两相摩擦阻力特性的影响规律。
5)  helical pipe
螺旋管
1.
Numerical Simulations on the Helical Pipe Oil-Water Separators for De-Oiling;
脱油型螺旋管油水分离器的数值模拟
2.
This paper presents experimental investigation on convective condensation heat transfer characteristics of alternative refrigerant R-134a in a helical pipe.
对替代制冷剂R - 1 34a在螺旋管内的对流凝结换热特性进行了实验研究。
3.
Separation of oil-water mixture flow in both straight and helical pipes is studied numerically, in which the Euler-Euler method and Euler model are adopted.
 本文采用数值模拟的方法研究油水混合物在直管和螺旋管中的流动状况。
6)  helical tube
螺旋管
1.
High efficiency and energy saving helical tube steam trap;
一种新型、高效、节能的螺旋管式蒸汽疏水器
2.
The helical tube structure design concept and structure size of transfer heat tube bundle were provided,and the heat transfer characteristics of tube bundle at supercritical pres- sure were analysed.
研究给出了传热管束的螺旋管结构设计方案和结构尺寸,并分析了其在超临界压力下的传热特性。
3.
A new type of double-side heating steam generator with helical tubes inside is presented and recommended in this paper.
介绍了一种新型的内管为螺旋管的管套管式双面加热直流蒸汽发生器。
参考词条
补充资料:左旋噻咪唑 , 盐酸左旋咪唑,左旋咪唑
药物名称:左旋四咪唑

英文名:Levamisole

别名: 驱蛔钩;盐酸左旋四咪唑;左咪唑;左旋驱虫净;左旋噻咪唑 , 盐酸左旋咪唑,左旋咪唑
外文名:Levamisole ,Levasole , LMS , L-Tetramisole, Nemicide
药理作用: 能抑制虫体肌肉琥珀酸脱氢酶的活动,使肌肉发生持续性收缩而麻痹。
适应症:
是一种广谱驱肠虫药,主要用于驱蛔虫及勾虫。 本品可提高病人对细菌及病毒感染的抵抗力。目前试用于肺癌、乳腺癌手术后或急性白血病、恶化淋巴瘤化疗后作为辅助治疗。此外,尚可用于自体免疫性疾病如类风湿关节炎、红斑性狼疮以及上感、小儿呼吸道感染、肝炎、菌痢、疮疖、脓肿等。对顽固性支气管哮喘经试用初步证明近期疗效显著。
用量用法:
1.驱蛔虫:成人每日100~200mg,饭后1小时顿服。儿童每日每千克体重2~3mg。 2.驱勾虫:每日100~200mg,饭后1小时顿服,连服2~3日。 3.治丝虫病:每日200~300mg,分2~3次饭后服,连服2~3日。 4.癌瘤的辅助治疗:1日量150~250mg,连服3日,休息11日,然后再进行下1疗程。 5.治疗类风湿性关节炎等:每次50mg,每日服2~3次,可连续服用。 6.治支气管哮喘:每服50mg,1日3次,连服3日,停药7日,6个月为1疗程。
注意事项:
偶有头晕、恶心、呕吐、腹痛、食欲不振、发热、嗜睡、乏力、皮疹、发痒等不良反应,停药后能自行缓解。个别病人可有白细胞减少症、剥脱性皮炎及肝功损伤。妊娠早期、肝功能异常及肾功能减退的病人慎用,肝炎活动期忌用。
规格: 片剂:盐酸盐,每片含基质15mg、25mg、50mg。




类别:免疫调节剂
说明:补充资料仅用于学习参考,请勿用于其它任何用途。