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作 者:徐志明[1] 李煜[1] 郭进生[1] 张仲彬[1]
机构地区:[1]东北电力大学能源与动力工程学院,吉林吉林132012
出 处:《华北电力大学学报(自然科学版)》2012年第3期78-82,101,共6页Journal of North China Electric Power University:Natural Science Edition
基 金:国家自然科学基金资助项目(51076025)
摘 要:对比实验研究了不同工况(冷却水入口温度、流速)下板式换热器松花江冷却水污垢特性,将污垢热阻与这两种运行参数进行了灰色关联分析,并就运行参数对其结垢的影响逐一作了机理分析。结果表明:板内污垢为析晶、生物等污垢共同组成的混合污垢,呈渐近型增长且无诱导期;冷水入口温度比流速更影响结垢;结垢机理为:冷水入口温度的提升,强化了污垢的附着、削弱了污垢层的脱除,结垢由对流传质和表面反应共同控制,低流速以对流传质为主,高流速以表面反应为主;流速对污垢剥蚀的影响强于沉积,故流速增加,净结垢量减少,污垢增长率减小。The fouling characteristics of Songhua River cooling water in a plate heat exchanger in different operating conditions were investigated through the contrast experiments. And then, based on Grey Relational Analysis, fouling resistances and operating parameters were contacted. Besides, the operating parameters' effect mechanisms were analyzed one by one. The result shows that the fouling, whose type is the composite fouling consisting of crystallization, microbiology fouling and so on, has an asymptotic growth rule and no induce period; and it is the inlet temperature that influences the fouling greater than the flow velocity. At last, the fouling mechanisms are obtained that the rise of inlet temperature of cooling water enhances the attachment of fouling to the wall region and weakens the detachment of fouling layer from the heat transfer surface, and the fouling is controlled by both convective mass transfer which is the main at low flow velocity and surface reaction which is at high one ; as a result of flow velocity' s greater effect on removal than deposition of fouling, both the net amount of fouling and fouling growth rate decreases when the flow velocity increases.
分 类 号:TK124[动力工程及工程热物理—工程热物理]
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