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A New Model for the Effect of Calcium Sulfate Scale Formation on Pool Boiling Heat Transfer

机译:硫酸钙水垢形成对池沸腾传热影响的新模型

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摘要

Scale deposition on the heat transfer surfaces from water containing dissolved salts considerably reduces fuel economy and performance of heat transfer equipment. This problem is more serious during nucleate boiling due to the mechanisms of bubble formation and detachment. Using a precision pool boiling test apparatus, the effects of heat flux and calcium sulfate concentration on heat transfer coefficient and formation and growth of deposits are investigated. The transient change in heat transfer is closely related to wick boiling, and the associated changes in bubble departure diameter and bubble site density. A physically sound prediction model was developed for the prediction of heat transfer coefficients as a function of time during deposition processes. Based on comparison with experimental data over a wide range of foulant concentrations and heat fluxes, the model is considered to be sufficiently accurate for practical application.
机译:含有溶解盐分的水在导热表面上产生的水垢沉积会大大降低燃油经济性和导热设备的性能。由于气泡形成和脱离的机理,在成核沸腾期间,这个问题更加严重。使用精密池沸腾测试仪,研究了热通量和硫酸钙浓度对传热系数以及沉积物形成和生长的影响。传热的瞬态变化与灯芯沸腾以及气泡离开直径和气泡位置密度的相关变化密切相关。开发了物理上合理的预测模型,用于预测沉积过程中传热系数随时间的变化。通过与各种污垢浓度和热通量的实验数据进行比较,该模型被认为对于实际应用是足够准确的。

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