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斥水性砂土水-氣形態(tài)及其對斥水-親水轉(zhuǎn)化的影響分析
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國家自然科學(xué)基金項(xiàng)目(41662021、51209182)


Pore Water-Air Configurations in Water Repellent Sandy Soil and Its Effects on Transformation of Hydrophilicity to Hydrophobicity
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    摘要:

    處于地球表面的土壤,尤其是耕作層土壤,受外界因素影響其接觸角可能會發(fā)生改變。通過試驗(yàn)對不同接觸角的壤質(zhì)砂土中的孔隙水-氣形態(tài)分布狀況進(jìn)行研究,試驗(yàn)結(jié)果表明:砂土顆粒與孔隙水間的接觸角增大會使表層土壤中水封閉土層厚度減小,但接觸角增大到一定值后,水封閉層的厚度不再發(fā)生變化。隨著接觸角的增大,氣封閉層的厚度不斷減小。與連續(xù)固體表面不同,砂土顆粒的接觸角小于90°甚至降低至36°也會出現(xiàn)明顯的斥水現(xiàn)象,但隨著砂土中飽和度的增大,斥水現(xiàn)象會消失,砂土斥水與親水轉(zhuǎn)化時(shí)對應(yīng)的飽和度與水封閉向雙開敞轉(zhuǎn)化時(shí)對應(yīng)的飽和度基本一致,因此,砂土親水與斥水轉(zhuǎn)化時(shí)對應(yīng)的臨界含水率與孔隙水氣分布形態(tài)密切相關(guān),通過理想模型對兩種不同水-氣形態(tài)下土壤的基質(zhì)吸力變化分析可以發(fā)現(xiàn),產(chǎn)生這種現(xiàn)象是因?yàn)楫?dāng)土壤由水封閉變?yōu)殡p開敞時(shí),水-氣交界面在液體側(cè)的曲率中心消失(接觸角小于90°),氣-液界面引起的基質(zhì)吸力恒為“正”。

    Abstract:

    The earth surface soil, especially cultivated soil, contact angles of soil may be changed by external factors. Hydrophilic soil will translate into hydrophobic soil because of the bigger contact angle. Repellent soil will bring a series of agricultural and environmental problems. To develop the study to the pore water-air shape distribution in different contact angle soils, some tests were carried out. The experimental results showed that the increase of contact angles between soil particles and pore water can make the thickness of the closed-water soil layer reduced. When the contact angle was increased to a certain value, the closed-water soil layer thickness would remain unchanged. With the increase of the contact angle, the thickness of closed-air layer was reduced. It was different from the continuous solid surface, the contact angel of soil granule was less than 90°, even reduced to 36°, it would also appear the water-repellent phenomenon obviously, but with the increase of the saturation degree in the sand, the water-repellent phenomenon would disappear. The corresponding saturation of water repellent and hydrophilic conversion was basically consistent with the corresponding saturation of closed-water system and bi-opened system transformation. Therefore, the critical water content of hydrophilicity to hydrophobicity was closely related to pore water-air configurations. The matric suction in different pore water-air configurations was analyzed with ideal models, the causes of this phenomenon was the disappearance of water-air surface centers of curvature in water side (contact angle was less than 90°), the matric suction caused by water-air surface was greater than zero. The results suggested that it was not enough to focus on chemical property of soil water repellency, the mechanics of interface was also an important aspect of repellent soil study.

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楊松,黃劍峰,羅茂泉,馬澤慧,王磊,吳玉琴.斥水性砂土水-氣形態(tài)及其對斥水-親水轉(zhuǎn)化的影響分析[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2017,48(11):247-252. YANG Song, HUANG Jianfeng, LUO Maoquan, MA Zehui, WANG Lei, WU Yuqin. Pore Water-Air Configurations in Water Repellent Sandy Soil and Its Effects on Transformation of Hydrophilicity to Hydrophobicity[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(11):247-252.

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  • 收稿日期:2017-02-10
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  • 在線發(fā)布日期: 2017-11-10
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