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1. C/H/O/N/S/Cl/K/Na元素的详细化学反应机理的简化与验证 [1386]
2. Effect of coal-over-coal reburn on furnace temperature and heat fl.. [1178]
3. Numerical simulation of off-gas formation during top-blown oxygen .. [1052]
4. 一种分段高温燃烧循环流化床系统及燃烧方法 [1043]
5. 空气分级燃烧炉膛壁面温度分布研究 [960]
6. NOx emission and thermal efficiency of a 300 MWe utility boiler re.. [900]
7. Detailed modeling of the effects of K/Na additives on the thermal .. [895]
8. Behavior of Alkali Metal Hydroxides/Chlorides for NO Reduction in .. [807]
9. 空气分级燃烧器稳焰器降低NO_x试验研究. [750]
10. 采用详细化学反应机理模拟燃烧污染物生成的研究进展 [749]
11. Catalytic reduction of nitric oxide by carbon monoxide over coal g.. [730]
12. Detailed modeling of NOx and SOx formation in co-combustion of coa.. [722]
13. ESTIMATION OF FLUORINE AND SULFUR BEHAVIORS AFFECTED BY CONVERTER .. [721]
14. 冶金炉炉气和烟气的发生、流动和反应过程研究 [719]
15. 采用详细化学反应机理研究煤富氧燃烧NO_x生成机制 [707]
16. Preparation of Si3N4 foam ceramics with nest-like cell structure b.. [705]
17. GPU上计算流体力学的加速 [673]
18. Optimization of Air Staging In A 1 Mw Tangentially Fired Pulverize.. [633]
19. Numerical study on NO(x)/CO emissions in the diffusion flames of h.. [625]
20. Promotion of CO Oxidization and Inhibition of NO Formation by Gase.. [610]
21. Study on peak overpressure and flame propagation speed of gas defl.. [593]
22. Effect of H2O Vapor on NO reduction by CO: experimental and kineti.. [583]
23. Numerical simulation of CO and NO emissions during converter off-g.. [577]
24. 带障碍物圆管内煤气爆燃峰值超压和火焰传播速度研究 [558]
25. 基于OpenCL的并行方腔流加速性能分析 [499]
26. 弯管分离器的数值模拟与设计优化 [467]
27. 碱金属盐对NH3选择性非催化还原NO的影响 [427]
28. 金属丝网高温烟气除尘器内部的气固两相流分析 [350]
29. Preparation of silicon nitride-barium aluminum silicate composites.. [341]
30. CO爆燃过程中火焰传播速度和超压峰值特性的数值模拟研究 [256]
31. 数值模拟在新型微型氢氧扩散火焰燃烧室设计中的应用 [253]
32. The design and main performance of a hydrogen peroxide/kerosene co.. [148]
33. 一种冶金渣余热回收设备及方法 [139]
34. Effect of HCl on NO Formation during CO/NH3 Combustion in an Entra.. [136]
35. Skeletal mechanism modelling of n-heptane/oxygen laminar coflow fl.. [134]
36. Mixing and combustion modeling of hydrogen peroxide/kerosene shear.. [127]
37. Experiment on NOx reduction by advanced reburning in cement precal.. [110]
38. 上吸式秸秆气化炉中当量比对气化特性的影响 [101]
39. Subpixel Temperature Measurements in Plasma Jet Environments Using.. [96]
40. Ignition Delay Characteristics of Kerosene with Decomposed Hydroge.. [94]
41. Release of alkali metals during co-firing biomass and coal [91]
42. Modeling NO and SO2 Oxidation by H2O2 in Coal-Fired Flue Gas [89]
43. Modeling of pressure effects on flame structure and soot formation.. [83]
44. 先驱体浸渍-裂解法制备SiBN纤维增强SiBN陶瓷基复合材料 [82]
45. 一种水泥熟料生产线篦冷机余热利用系统 [70]
46. 冷冻注凝制备氮化硅陶瓷基耐高温复合材料 [68]
47. Molecular Dynamics Simulation of Microcrack Healing in Copper [63]
48. Experimental Investigation of Fuel Composition and Mix-Enhancer Ef.. [62]
49. Numerical simulation of CO reaction with HCl addition based on red.. [61]
50. Experimental investigation and numerical simulation of CO oxidatio.. [53]
51. 水泥分解炉高CaO/CO2环境CO还原NO机制 [47]
52. 运用CPD模型研究高灰低挥发分煤的热解特性 [43]
53. Combustion states distinction of the methane/oxygen laminar co-flo.. [41]
54. 篦冷机内气固流动和换热过程的数值模拟 [37]
55. 等离子体煤制气还原氮氧化物的特性研究 [6]
56. 高灰低挥发分煤空气分级燃烧特性研究 [4]
57. 水泥分解炉高CaO/CO_2环境CO还原NO机制 [4]

Downloads

1. C/H/O/N/S/Cl/K/Na元素的详细化学反应机理的简化与验证 [630]
2. Effect of coal-over-coal reburn on furnace temperature and heat fl.. [337]
3. 空气分级燃烧炉膛壁面温度分布研究 [319]
4. Numerical simulation of off-gas formation during top-blown oxygen .. [309]
5. Detailed modeling of the effects of K/Na additives on the thermal .. [282]
6. NOx emission and thermal efficiency of a 300 MWe utility boiler re.. [260]
7. Preparation of Si3N4 foam ceramics with nest-like cell structure b.. [230]
8. ESTIMATION OF FLUORINE AND SULFUR BEHAVIORS AFFECTED BY CONVERTER .. [227]
9. Behavior of Alkali Metal Hydroxides/Chlorides for NO Reduction in .. [208]
10. Detailed modeling of NOx and SOx formation in co-combustion of coa.. [197]
11. 空气分级燃烧器稳焰器降低NO_x试验研究. [181]
12. Numerical simulation of CO and NO emissions during converter off-g.. [175]
13. 采用详细化学反应机理研究煤富氧燃烧NO_x生成机制 [171]
14. GPU上计算流体力学的加速 [168]
15. 一种分段高温燃烧循环流化床系统及燃烧方法 [154]
16. Effect of H2O Vapor on NO reduction by CO: experimental and kineti.. [143]
17. 基于OpenCL的并行方腔流加速性能分析 [136]
18. Numerical study on NO(x)/CO emissions in the diffusion flames of h.. [134]
19. 采用详细化学反应机理模拟燃烧污染物生成的研究进展 [132]
20. 金属丝网高温烟气除尘器内部的气固两相流分析 [126]
21. 带障碍物圆管内煤气爆燃峰值超压和火焰传播速度研究 [120]
22. Optimization of Air Staging In A 1 Mw Tangentially Fired Pulverize.. [114]
23. Catalytic reduction of nitric oxide by carbon monoxide over coal g.. [114]
24. Promotion of CO Oxidization and Inhibition of NO Formation by Gase.. [110]
25. 碱金属盐对NH3选择性非催化还原NO的影响 [108]
26. Study on peak overpressure and flame propagation speed of gas defl.. [88]
27. CO爆燃过程中火焰传播速度和超压峰值特性的数值模拟研究 [79]
28. 数值模拟在新型微型氢氧扩散火焰燃烧室设计中的应用 [79]
29. 弯管分离器的数值模拟与设计优化 [78]
30. Preparation of silicon nitride-barium aluminum silicate composites.. [74]
31. The design and main performance of a hydrogen peroxide/kerosene co.. [38]
32. Effect of HCl on NO Formation during CO/NH3 Combustion in an Entra.. [36]
33. Mixing and combustion modeling of hydrogen peroxide/kerosene shear.. [34]
34. Skeletal mechanism modelling of n-heptane/oxygen laminar coflow fl.. [32]
35. 一种冶金渣余热回收设备及方法 [30]
36. Release of alkali metals during co-firing biomass and coal [26]
37. Experiment on NOx reduction by advanced reburning in cement precal.. [20]
38. 先驱体浸渍-裂解法制备SiBN纤维增强SiBN陶瓷基复合材料 [18]
39. 上吸式秸秆气化炉中当量比对气化特性的影响 [17]
40. 冷冻注凝制备氮化硅陶瓷基耐高温复合材料 [15]
41. Modeling of pressure effects on flame structure and soot formation.. [13]
42. Molecular Dynamics Simulation of Microcrack Healing in Copper [12]
43. Experimental investigation and numerical simulation of CO oxidatio.. [12]
44. Ignition Delay Characteristics of Kerosene with Decomposed Hydroge.. [11]
45. Modeling NO and SO2 Oxidation by H2O2 in Coal-Fired Flue Gas [9]
46. Subpixel Temperature Measurements in Plasma Jet Environments Using.. [8]
47. 一种水泥熟料生产线篦冷机余热利用系统 [4]
48. 冶金炉炉气和烟气的发生、流动和反应过程研究 [2]
49. Experimental Investigation of Fuel Composition and Mix-Enhancer Ef.. [2]
50. 篦冷机内气固流动和换热过程的数值模拟 [2]
51. 水泥分解炉高CaO/CO2环境CO还原NO机制 [1]