Analysis of Underwater Melting Process and Leakage Plugging Performance of Phase-Change Materials

材料科学 泄漏(经济) 复合材料 熔点 水下 硬脂酸 松香 化学工程 工程类 地质学 海洋学 经济 宏观经济学 树脂酸
作者
Shenghang Zhang,Lei Tang,Fei Li,Po Li,Yuzhou Sima,Shuang Zhao
出处
期刊:Materials [MDPI AG]
卷期号:17 (11): 2647-2647
标识
DOI:10.3390/ma17112647
摘要

Leakage is a high-incidence disease of embankment dams, and efficiently addressing this disease guarantees the safe operation of dams. Underwater leakage self-priming plugging technology is a new technology that utilizes the melting and solidifying characteristics of phase-change materials and the negative pressure in the leakage entry area to accurately plug the leakage. However, little is yet known about the underwater melting process of phase-change materials and how their characteristics influence the plugging effect. In this study, three kinds of phase-change materials, namely, paraffin, rosin, and stearic acid, were used to conduct underwater leakage self-priming plugging tests, observe and analyze the underwater melting process, and compare the plugging effects. The results showed that the underwater melting process of phase-change materials exhibited different plugging window periods depending on their melting points, specific heat capacities, and mobilities, which were the main factors affecting their plugging effects. In the final plugging stage, paraffin had the best plugging effect, but the material strength was low; rosin had good plugging compactness, but the fluidity performance was poor, and the material effective utilization was low; stearic acid had a low melting point but dispersed easily. Therefore, a blocking material with a suitable blocking window period can be produced by adjusting the material properties accordingly for an improved blocking effect.
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