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模拟体内带有疏水裂缝的气泡形成的观察结果。

Modeling the observations of in vivo bubble formation with hydrophobic crevices.

作者信息

Tikuisis P

出版信息

Undersea Biomed Res. 1986 Jun;13(2):165-80.

PMID:3727182
Abstract

In vivo hydrophobic crevices from which bubbles emerge upon decompression are hypothesized to account for experimental observations of bubble formation in decompressed shrimp. The conical crevice model can be used to explain the sharp increase in the number of bubbles observed in shrimp for decompression ratios greater than 4:1. In accordance with the observed attenuating effects of pressure pretreatment on bubble formation in shrimp, the model can also be used to explain: the evolution of the gas nuclei to smaller stable sizes during compression; the return of the nuclei to their original stable configurations when the overpressure is removed; and the requirement for greater decompressions to cause emergence of bubbles from the nuclei as the magnitude and period of pressure pretreatment are increased. A new crevice geometry with elliptically shaped walls is introduced which reduces the height of the crevice needed for bubble emergence and relaxes the constraints for the stability of gas nuclei. This new geometry reduces the height of crevices required for the prediction of bubble emergence an order of magnitude when compared to the conical crevice, and satisfies the hydrophobic crevice condition as long as the crevice surface has a contact angle greater than 90 degrees.

摘要

体内存在疏水裂缝,减压时气泡从中冒出,据推测这可以解释减压虾中气泡形成的实验观察结果。锥形裂缝模型可用于解释在减压比大于4:1的虾中观察到的气泡数量急剧增加的现象。根据观察到的压力预处理对虾中气泡形成的衰减作用,该模型还可用于解释:压缩过程中气体核演变为更小的稳定尺寸;超压消除后,核恢复到其原始稳定构型;以及随着压力预处理的幅度和持续时间增加,需要更大的减压才能使气泡从核中冒出。引入了一种具有椭圆形壁的新裂缝几何形状,它降低了气泡冒出所需的裂缝高度,并放宽了气体核稳定性的限制。与锥形裂缝相比,这种新几何形状将预测气泡冒出所需的裂缝高度降低了一个数量级,并且只要裂缝表面的接触角大于90度,就满足疏水裂缝条件。

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