Therefore, the influence of centrifugal buoyancy on the heat transfer performance of tube-shell heat exchanger with swirling flow was not negligible.
故在有旋流存在的管壳式换热器中,离心浮力对换热器传热性能的影响不可忽视。
Furthermore, the influence of centrifugal buoyancy on the performance of heat transfer was more distinct in the case of swirling flow existing in the side of larger thermal resistance.
当热阻较大一侧有旋流存在时,离心浮力对换热器传热性能的影响更为明显。
The convection in molten liquid can be much more weakened by buoyancy convection increasing the flow of liquid encapsulation in this model.
在本文模型中,浮力对流促进了液封层的流动,从而加大了对熔体热毛细对流的抑制作用。
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