[1] |
张冠敏, 李冠球, 李蔚, 等. 板式换热器内颗粒污垢预测模型与实验[J]. 工程热物理学报, 2013, 34(9):1715-1718. ZHANG G M, LI G Q, LI W, et al. Experimental and theoretical investigations about particular fouling in plate heat exchangers[J]. Journal of Engineering Thermophysics, 2013, 34(9):1715-1718.
|
[2] |
杨善让, 徐志明, 孙灵芳. 换热设备污垢与对策[M]. 第2版. 北京:科学出版社, 2004:15. YANG S R, XU Z M, SUN L F. Fouling and Countermeasures for Heat Transfer Equipment[M]. 2nd ed. Beijing:Science Press, 2004:15.
|
[3] |
CHAPMAN J, WEIR E, REGAN F. Period four metal nanoparticles on the inhibition of biofouling[J]. Colloids and Surfaces B:Biointerfaces, 2010, 78(2):208-216.
|
[4] |
MELO L F, BOTT T R. Biofouling in water systemsp[J]. Experimental Thermal and Fluid Science, 1997, 14(4):375-381.
|
[5] |
RAHMANI K, JADIDIAN R, HAGHTALAB S. Evaluation of inhibitiors and biocides on the corrosion, scaling and biofouling control of carbon steel and copper-nickel alloys in a power plant cooling water system[J]. Desalination, 2016, 393(1):174-185.
|
[6] |
HABIMANA O, SEMIAO A J C, CASEY E. The role of cell-surface interactions in bacterial adhesion and consequent biofilm formation on nanofiltration/reverse osmosis membranes[J]. Journal of Membrane Science, 2014, 54(15):82-96.
|
[7] |
YANG Q P, WILSON D I, CHENG X D, et al. Experimental investigation of interactions between the temperature field and biofouling in a synthetic treated sewage stream[J]. Biofouling, 2013, 29(5):513-523.
|
[8] |
曹生现, 孙嘉伟, 刘洋, 等. 微生物污垢形成的传热传质模型[J]. 工程热物理学报, 2012, 33(6):1023-1026. CAO S X, SUN J W, LIU Y, et al. Heat and mass transfer model of biofouling formation[J]. Journal of Engineering Thermophysics, 2012, 33(6):1023-1026.
|
[9] |
徐志明, 贾玉婷, 王丙林, 等. 板式换热器铁细菌生物污垢特性的实验分析[J]. 化工学报, 2014, 65(8):3178-3183. XU Z M, JIA Y T, WANG B L, et al. Experimental analysis on bio-fouling of iron bacteria on plate heat exchanger[J]. CIESC Journal, 2014, 65(8):3178-3183.
|
[10] |
ANDRITSOS N, KARBELAS A J. Calcium carbonate scaling in a plate exchanger in the presence of particles[J]. International Journal of Heat and Mass Transfer, 2003, 46(24):4613-4627.
|
[11] |
李素芳, 王良成, 王良璧, 等. CaCO3在不锈钢光管内结构特性及其对传热的影响[J]. 工程热物理学报, 2016, 37(2):419-423. LI S F, WANG L C, WANG L B, et al. The characteristics of CaCO3 fouling and their effect on heat transfer of stainless steel smooth tube[J]. Journal of Engineering Thermophysics, 2016, 37(2):419-423.
|
[12] |
PÄÄKKÖNEN T M, RÌÌHÌMÄKÌ C J, Simonson, et al. Modeling CaCO3 crystallization fouling on a heat exchanger surface-definition of fouling layer properties and model parameters[J]. International Journal of Heat and Mass Transfer, 2015, 83:84-98.
|
[13] |
MAYER M, BUCKO J, BENZINGER W, et al. The impact of crystallization fouling on a microscale heat exchanger[J]. Experimental Thermal and Fluid Science, 2012, 40:126-131.
|
[14] |
赵亮, 邹勇, 刘义达, 等. 温度对换热器析晶污垢形成的影响[J]. 化工学报, 2009, 60(8):1938-1943. ZHAO L, ZOU Y, LIU Y D, et al. Effect of temperature on formation of crystalline fouling on heat exchanger surface[J]. CIESC Journal, 2009, 60(8):1938-1943.
|
[15] |
LEI C W, PENG Z X, DAY T, et al. Experimental observation of surface morphology effect on crystallization fouling in plate heat exchangers[J]. International Communication in Heat and Mass Transfer, 2011, 38(1):25-30.
|
[16] |
徐志明, 杜祥云, 董鹏飞, 等. 两种CaCO3溶液配制法下板式换热器的污垢特性[J]. 化学工程, 2013, 41(10):22-25. XU Z M, DU X Y, DONG P F, et al. Fouling characteristics of plate heat exchanger with two kinds of CaCO3 solution preparation method[J]. Chemical Engineering(China), 2013, 41(10):22-25.
|
[17] |
MEADOWS P S, ANDERSON J Q. The microbiology of interfaces in the marine environment[J]. Progress in Industrial Microbiology, 1979, 13:207-265.
|
[18] |
李香琴, 刘天庆, 王鸿灵, 等. 水系统中微生物与碳酸钙混合垢的形成过程[J]. 化工学报, 2002, 53(12):1247-1252. LI X Q, LIU T Q, WANG H L, et al. Mixed fouling growth process-microbial and CaCO3 fouling in water systems[J]. Journal of Chemical Industry and Engineering (China), 2002, 53(12):1247-1252.
|
[19] |
田磊, 杨倩鹏, 史琳, 等. 颗粒对换热表面微生物污垢形成的影响研究[J]. 工程热物理学报, 2012, 33(10):1767-1770. TIAN L, YANG Q P, SHI L, et al. Development of biofouling by bacillus subtilis on heat transfer surfaces in the presence of silica dioxide particles[J]. Journal of Engineering Thermophysics, 2012, 33(10):1767-1770.
|
[20] |
FLEMMING H C, MURTHY P S, VENKATESAN R. Marine and Industrial Biofouling[M]. Berlin:Springer, 2008:27.ternational Journal of Heat and Mass Transfer, 2015, 83: 84-98
|
[13] |
MAYER M, BUCKO J, BENZINGER W, et al. The impact of crystallization fouling on a microscale heat exchanger[J]. Experimental Thermal and Fluid Science, 2012,40: 126-131
|
[14] |
赵亮, 邹勇, 刘义达, 等. 温度对换热器析晶污垢形成的影响[J]. 化工学报, 2009, 60(8): 1938-1943 ZHAO L, ZOU Y, LIU Y D, et al. Effect of temperature on formation of crystalline fouling on heat exchanger surface[J]. Journal of Chemical Industry and Engineering, 2009, 60(8): 1938-1943
|
[15] |
LEI C W, PENG Z X, DAY T, et al. Experimental observation of surface morphology effect on crystallization fouling in plate heat exchangers[J]. International Communication in Heat and Mass Transfer, 2011, 38(1): 25-30
|
[16] |
徐志明, 杜祥云, 董鹏飞, 等. 两种CaCO3溶液配制法下板式换热器的污垢特性[J]. 化学工程, 2013, 41(10): 22-25 XU Z M, DU X Y, DONG P F, et al. Fouling characteristics of plate heat exchanger with two kinds of CaCO3 solution preparation method[J]. Chemical Engineering, 2013, 41(10): 22-25
|
[17] |
MEADOWS P S, ANDERSON J Q. The Microbiology of Interfaces in the Marine Environment[J]. Progress in Industrial Microbiology, 1979, 13: 207-265
|
[18] |
李香琴, 刘天庆, 王鸿灵, 等. 水系统中微生物与碳酸钙混合垢的形成过程[J]. 化工学报, 2002, 53(12): 1247-1252 LI X Q, LIU T Q, WANG H L, et al. Mixed fouling growth process-microbial and CaCO3 fouling in water systems[J], Journal of Chemical Industry and Engineering, 2002, 53(12): 1247-1252
|
[19] |
田磊, 杨倩鹏, 史琳, 等. 颗粒对换热表面微生物污垢形成的影响研究[J]. 工程热物理学报, 2012, 33(10): 1767-1770 TIAN L, YANG Q P, et al. Development of biofouling by bacillus subtilis on heat transfer surfaces in the presence of silica dioxide particles[J]. Journal of Engineering Thermophysics, 2012, 33(10): 1767-1770
|
[20] |
Flemming H C, Murthy P S, Venkatesan R. Marine and Industrial Biofouling[M].Berlin: Springer.2008: 27
|