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1)  maximum gas solid ratio
最大固气比
2)  final gas solid velocity ratio
最终固气速度比
3)  solid-gas ratio
固气比
1.
Experiments of pulverized coal dense-phase pneumatic conveying using nitrogen were carried out in an experimental setup at the pressure up to 4 MPa and the solid-gas ratio up to 500 kg/m3.
0 MPa,固气比高达500 kg/m3的气力输送试验台上进行粉煤输送试验。
2.
On a high-pressure pneumatic conveyance test stand with a conveyance pressure and solid-gas ratio being respectively as high as 4.
0 MPa,固气比高达500 kg/m3的高压气力输送试验台上,用氮气进行粉煤高压浓相气力输送试验研究。
3.
Experiments of dense-phase pneumatic conveying of pulverized coal using nitrogen were carried out in an experimental test facility with the conveying pressure up to 4MPa and the solid-gas ratio up to 450kg/m3.
0MPa,固气比高达450kg/m3的高压气力输送试验台上,用氮气进行煤粉高压浓相气力输送试验研究。
4)  Solid/Gas Ratio
固气比
1.
Influence of flow of carrying gas on solid/gas ratio in pneumatic conveying of waste plastics is experimentally studied.
研究了废塑料在气力输送过程中气流量对固气比的影响。
2.
6 MPa investigated the effect of the location of gas nozzle in a pneumatic coal transport system injector (without a diffuser tube) and solid/gas ratio on the pneumatic transport stability.
作者考察了锅炉压力为 0 6MPa下 ,气力输煤系统喷射器 (无扩散管 )气体喷嘴的位置和固气比对输送稳定性的影响 ,以及在锅炉压力为 0 6MPa下连续气力输灰特性。
3.
The influences of such factors as conveying pressure,conveying differential pressure,flow rates of fluidizing gas,pressurized gas and supplying gas,and moisture in coal on the solid/gas ratio were investigated.
7 MPa,固气比可达660 kg。
5)  ratio of solid to gas
固气比
1.
This paper mainly studies the influences of the ratio of solid to gas and the position of gas nozzle in the injector (without secondary nozzle) on the stability of pneumatic conveying at a terminal pressure of 0.
6 MPa(PFBC中试电站流化床压力 )下 ,固气比和喷射器 (无二次喷嘴 )气体喷嘴位置对输送稳定性的影
2.
This paper is to study how the pressure fluctuates along the pipe under differential ratio of solid to gas when the back-pressure is settled at 0.
以国家“八五”、“九五”重点科技攻关课题“徐州贾汪PFBC中试电站”项目为背景 ,针对加压条件下不同固气比时 ,气固两相输送的压力特性展开试验和分析研究。
6)  high solid-gas ratio
高固气比
1.
For further decreasing the calorific consumption and improving thermal efficiency, the research of preheater system and development for the preheating-precalcining system with high solid-gas ratio (HSGR) have been conducted for several years by Institute of Powder Engineering in Xi'an University of Architecture & Technology.
为了进一步降低预热器系统的热耗,提高预热器系统的热效率,西安建筑科技大学粉体工程研究所一直致力于高固气比预热预分解系统的研究与开发,本文正是基于这一点而着手研究开发三系列高固气比旋风预热器系统。
2.
There are many advantages for recirculating calciner with high solid-gas ratio(HSGR).
外循环式高固气比分解炉具有诸多优点,而通过离心分离的方式选择性地让大颗粒物料作外部循环,则更能发挥外循环式分解炉独有的优势。
补充资料:最大F比法
分子式:
CAS号:

性质:又称最大F比法,是检验多个方差的齐性的方法。它只能用于等测定次数所得到的方差齐性的检验。检验统计量式中,是被检验的m个方差中最大的方差。当由样本值计算的Fmax值大于哈特利检验临界值表中约定显著性水平和相应自由度时的临界值时,判与其余的方差之间在统计上有显著性差异。

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