1) Dense Phase Pneumatic Conveying
浓相、超浓相输送
2) dense-phase
浓相
1.
Flow characteristics and Shannon entropy analysis of dense-phase pneumatic conveying under high pressure;
高压浓相粉煤气力输送特性及信息熵分析(英文)
2.
Application of electrical capacitance tomography in dense-phase pneumatic conveying of pulverized coal under high pressure;
电容层析成像在高压浓相煤粉气力输送中的应用
3.
Experiments of pulverized coal dense-phase pneumatic conveying using nitrogen were carried out in an experimental setup.
在高达700kg/m3的高压气力输送试验台上,用氮气进行煤粉高压浓相粉煤气力输送试验研究。
3) dense phase
浓相
1.
Development of an automatic control system of lumina dense phase and hyper dense phase storage and covey;
氧化铝浓相、超浓相贮运自动控制系统的研制
2.
Research on flow characteristics of positive dense phase pneumatic conveyance and system selection;
浓相正压气力输送流动特性研究和系统选择
3.
Conposition,characteristics and operation of a dense phase pneumatic conveying system with positive pressure for coal ash in Thermal Power Plant of Anqing Petrochemical Work are described.
详细介绍了安庆石化热电厂正压浓相气力输灰系统的组成、特点及运行情况。
4) concentrated phase
浓相
1.
At the same time, the volume fraction of concentrated phase increased from 25% to over 40%.
结果表明,大庆原油与碱反应1d时,测得其浓相体积分数为25%,所形成的乳状液为O/W型乳状液,而随着原油与碱作用时间的增加,其浓相体积分数达到40%以上,形成W/O型乳状液,且乳状液稳定性随作用时间增加而增强。
2.
In pneumatic ash handling system,the granule can be concentrated phase conveyed in the shape of plunger at low flow velocity,and the attrition of conveying pipe in this system is least.
根据 Geldart 的颗粒分类方法,对于 A、B 类颗粒物料易流化,采用气力方式可实现浓相低流速柱塞状输送,使输送管道的磨损最小。
3.
A new de-ashing method, known as the fly-ash air-transport technology with concentrated phase positive pressure, is introduced in this paper.
燃煤锅炉的除灰方式及除灰系统对电厂的安全、经济运行及环境保护有着重大的影响,介绍一种新型的干式除灰技术──飞灰正压浓相气力输送。
5) rich phase
浓相
6) super dense-phase
超浓相
1.
High-pressure super dense-phase pneumatic conveying of pulverized coal is one of the key techniques met with in large-scale gasification.
煤粉的高压超浓相气力输送是大规模煤气化技术的关键技术之一。
参考词条
补充资料:浓尾大地震
| 浓尾大地震 Great Mino-Owari Earthquake of 1891 1891发生在日本的大地震。1891年10月28日发生于岐阜县,当时的地名叫美浓和尾张,故通称浓尾大地震。此震的极震区位于伊势湾以北的广大平原地区,从福井市的东南延伸到名古屋市。地表可见断层规模很大,据当时估计,主断层可能长达80千米左右。在根尾谷地区,断层的显示特别壮观,常常作为地表断层的典型资料。一条通往岐阜城的大路被断层崖切断,断层东侧的地面升高约6米,并向北滑动约4米。按照日本后来估定的震级,最低为7.9,最高为8.4。浓尾大地震在日本政界和学术界引起震动,并促成在日本成立了世界上最早的震害预防研究机构。 |
说明:补充资料仅用于学习参考,请勿用于其它任何用途。