1) Ultrafiltration failure
失超滤
2) Peritonealultraflltration failure
腹膜透析失超滤
3) quench
失超
1.
Impact of superconductive electrical equipment quench on power system;
超导电力设备失超对电力系统的影响
2.
The quench behavior of YBCO coated conductors subjected to over-critical current with different pulse durations at 50 Hz is researched in order to explore their prospects for power application in liquid nitrogen.
为了探索YBCO涂层导体在液氮温度77K和50Hz工频下的电力应用,实验研究YBCO涂层导体在不同过流冲击条件下的失超特性。
3.
This paper deals with the insulation performance of liquid helium (LHe) degraded by the quench-induced thermal bubble under cryogenic operating conditions of superconducting apparatus.
综述了超导设备在失超情况下液氦中气泡的形成 ,以及气泡对超导设备的绝缘特性的影响 ,分析了在均匀和不均匀电场中热传导率、压强及电极表面状况对击穿特性的影响 ,并探讨了提高失超情况下液氦击穿电压的方
4) quenching
失超
1.
Analyzing the reasons of quenching of MRI;
MRI仪三次失超(QUENCHING)原因的分析
2.
The measurement schematic diagram of the temperature, magnetic field and quenching has been analysed and the result is testifled by the computer modify.
对温度、磁场、磁体失超等测量电路进行了分析,并通过计算机仿真证明其结论。
3.
In this paper, the quenching and recovering Characteristics of stainless-steel reinforced multifilamentary Bi2223/Ag tapes in quasi-adiabatic state with over-currents at power frequency were experimentally and theoretically studied.
本文对工频过电流冲击下准绝热环境中的Bi-2223/Ag不锈钢加强多芯带的失超及恢复特性进行了实验研究。
5) Quench propagation
失超传播
1.
Numerical simulation of quench propagation of Bi-2223/Ag superconducting tapes;
Bi-2223/Ag超导带失超传播的数值模拟
2.
Quench propagation in HTS tapes in 1D heat propagation model;
对Bi-2223/Ag高温超导带材的失超传播特性进行了研究。
6) quench detection
失超检测
1.
This paper summarizes the technologies of the quench detection and protection of superconducting magnet energy storage system applied in the electrical power system.
笔者综述了超导储能磁体的设备级失超检测及保护方法,并提出了参考性建议。
2.
This paper presents the quench detection of SMES in power system operation, and puts forward forecast theory for quench detection.
对国内外通用的超导装置失超检测方法进行了分析 ,并根据电力系统中超导装置失超检测的特点 ,对高温超导线材在不同幅值的动态电流作用下的失超特性进行了试验研究 ,通过对试验数据的分析 ,对高温超导线材的失超特性有了较精细的理解 ,并在此基础上提出了超导电力装置失超先兆检测及其失超保护设计的新概念。
参考词条
补充资料:高温高压滤失量
分子式:
CAS号:
性质: 在模拟井底的高温(80~232℃)、高压(4140~6555Pa)条件下,在API规定的过滤面积(4580mm2±60mm2)和过滤时间(30min)里,钻井液的滤失量(ml)。
CAS号:
性质: 在模拟井底的高温(80~232℃)、高压(4140~6555Pa)条件下,在API规定的过滤面积(4580mm2±60mm2)和过滤时间(30min)里,钻井液的滤失量(ml)。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。