Parameter study on the performance of dropwise condensation

Gerd Koch , Kjeld Kraft , Alfred Leipertz
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引用次数: 40

Abstract

New amorpheous hydrogenated carbon films have been applied successfully to promote dropwise condensation (DWC) of steam on metallic surfaces at atmospheric pressure. The highest heat transfer coefficients have been measured for completely coated surfaces, maximum contact angle, largest thermal conductivity of the base material, vertically oriented wall and minimum wall height. The effect of these parameters on the DWC performance is evaluated quantitatively. The investigation of partly coated surfaces shows, that even for a small portion of coated surface (approx. 20 % DWC and 80 % filmwise condensation (FWC)) still nearly maximum heat transfer is achieved. This phenomenon is explained qualitatively by the application of numerical simulation of the local condensation process using the finite element method (FEM). Furthermore, this analysis technique also explains the dependence of DWC heat transfer on the thermal conductivity of the base material being coated.

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水滴冷凝性能的参数研究
新型非晶氢化碳膜在常压下用于促进蒸汽在金属表面的水滴冷凝(DWC)。在完全涂覆的表面、最大接触角、基材的最大导热系数、垂直取向的壁和最小壁高的情况下,测量了最高的传热系数。定量评价了这些参数对DWC性能的影响。对部分涂覆表面的研究表明,即使是一小部分涂覆表面(约。20%的DWC和80%的膜状冷凝(FWC))仍然接近最大的传热实现。采用有限元法对局部凝结过程进行数值模拟,定性地解释了这一现象。此外,该分析技术还解释了DWC传热对被涂基材导热系数的依赖。
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