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排序方式: 共有127条查询结果,搜索用时 15 毫秒
1.
蓄热室效能剖析   总被引:3,自引:2,他引:1  
提高蓄热室效能是降低池窑能耗的有力措施.本文分析了反映蓄热室热交换能力的综合传热系数,进一步探讨了格子砖内部热交换过程和外部热交换过程中的矛盾以及解决矛盾的方法,继而谈及妥善处理在增加格子砖热交换表面上的矛盾,最后提出了衡量蓄热室效能的技术-经济指标以及提高技术指标的主要途径.  相似文献   
2.
吴建国  吴畏 《冶金能源》1996,15(6):38-40
本文对无溢流管多层流化床换热器进行了热态模型实验研究,得出了气-固两相间的界膜换热系数曲线,所得结论可供参考。  相似文献   
3.
The hydrodynamic and gas mixing characteristics have been determined in a FCC regenerator (0.48 m I.D.x3.4 m high) with FCC particles. Solids holdup in the dense bed decreases with increasing gas velocity, but it increases in the freeboard region. The bubble/void fraction increases with an increase along the bed height at a given gas velocity and increases with increasing gas velocity at a constant bed height. Backmixed tracer gas at the wall region is higher than that at the center region of the bed. The gas backmixing coefficient decreases with increasing gas velocity.  相似文献   
4.
L.M. Qiu  Y.L. He  Z.H. Gan  G.B. Chen 《低温学》2005,45(9):641-643
A single-stage G-M type pulse tube cooler (PTC) was designed and tested to explore the lowest attainable refrigeration temperature and to further improve the cooling performance in the temperature range of 15-40 K. The magnetic material Er3Ni was used as part of the regenerative material besides the phosphor-bronze and the lead so as to improve the efficiency of the regenerator. With an input power of 6 kW, a lowest no-load refrigeration temperature of 12.6 K was obtained, which is a new record for the single-stage PTC. The cooling capacity at 15-40 K was also significantly improved, which may extend the application of the single-stage PTC for the cooling of superconductors and cryopumps.  相似文献   
5.
尹铨 《当代化工》2014,(8):1468-1470
从催化剂性质、旋分器运行工况、工艺操作条件等方面分析了1.0 Mt/a催化裂化装置催化剂跑损原因,提出了相应整改措施。  相似文献   
6.
Z.H. Gan  L.M. Qiu  X.B. Zhang  Y.L. He 《低温学》2009,49(5):198-201
In order to explore the lowest attainable refrigeration temperature and improve cooling performance at temperatures around 20 K for a single-stage G-M type pulse tube cryocooler (PTC), numerical and experimental studies were performed. The National Institute of Standards and Technology (NIST) numerical model known as REGEN was applied to the simulation of a G-M type PTC for the first time. Based on the calculation results, a single-stage G-M type PTC was designed, fabricated and tested. The performance improvement of the regenerator in the temperature range of 10-80 K was investigated. The calculations predicted a lowest temperature of 10 K. A lowest temperature of 10.6 K was achieved experimentally with an input power of 7.5 kW, which is the lowest temperature ever achieved by a single-stage PTC. Further more, the cryocooler can provide a cooling power of 20 W at 20.6 K and 39.5 W at 30 K, respectively.  相似文献   
7.
丁洪亮 《家电科技》2005,(12):53-56
由于空调制热是室外机作为蒸发器从外部环境吸收热量,在外部环境温度较低的场合,由于换热温差和换热面积的限制,这种方式的效率较低.因此本文探讨了利用液体喷射提高制热量的方法.  相似文献   
8.
A newly developed magnetic regenerator material Er(Ni0.075Co0.925)2, having high specific heat at temperatures from 10 to 20 K, has been tested inside the second regenerator of a two-stage GM cryocooler. Different working conditions have been examined: four Er(Ni0.075Co0.925)2/Pb material ratios, three displacer reciprocating speeds, and two cryocooler stroke lengths. In the best working conditions, the experimental results show a cooling power improvement up to 15% over the whole temperature range from 10 to 20 K compared to that of the same GM cryocooler employing only lead.  相似文献   
9.
原油的重质化和劣质化,以及降低催化裂化汽油烯烃含量和催化裂化生产低碳烯烃的迫切需求,促进了流态化技术在催化裂化装置中应用的不断改造和创新。本文分别从反应器、汽提器和再生器等部分介绍了流态化技术在催化裂化工艺领域应用的新进展。  相似文献   
10.
The design of a double inlet pulse tube refrigerator is investigated by means of an analogy with an electric circuit. The results obtained are compared with both those of the thermodynamic model (Part A) and experiments. The basic formulation of equivalent electronic components is discussed and a few improvements are proposed for adjusting the theoretical expressions of the electric impedance concerning the capillaries and the regenerator. Then additional effects such as pressure drops due to geometrical singularities are taken into account considering the different internal flow regimes that may occur. Besides a simplified formulation for the regenerator efficiency is deduced from considerations on its harmonic functioning. In this analysis, the emphasis concerns principally the design of miniature cryocoolers dedicated to electronic applications. Those models are applied to a commercial miniature refrigerator. A discussion of their relevance is achieved and a few suggestions on the refrigerator design are proposed in order to improve the cooling production.  相似文献   
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