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分散流控制壁對無壓滲漏計收集效率影響的定量評價
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國家自然科學基金資助項目(41471186)、公益性行業(yè)(農(nóng)業(yè))科研專項資助項目(201103005-01-01)和農(nóng)業(yè)部科研杰出人才及創(chuàng)新團隊資助項目(2012)


Quantitative Evaluation of Effects of Divergence Barrier on Collection Efficiency of Zero-tension Lysimeter Collection Efficiency of Zero-tension Lysimeter
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    摘要:

    無壓滲漏計(Zero-tension lysimeter,,ZTL)多用于非飽和帶土壤溶質(zhì)通量的監(jiān)測,但由于ZTL安裝時與原狀土壤相接觸會存在毛管障礙界面,,易形成分散流使其土壤溶液收集效率降低。為準確描述田間水分滲漏量或土壤溶質(zhì)的運移過程與規(guī)律,,基于HYDRUS模型模擬結(jié)果,,對ZTL不同設(shè)計(加裝不同高度分散流控制壁)和不同適用環(huán)境條件(土壤質(zhì)地、灌水量,、土壤蒸發(fā)量和初始土壤含水率)的土壤滲漏水收集效率及影響因素進行數(shù)值模擬和定量評價,。結(jié)果表明,無分散流控制壁的ZTL(ZTL0),,在0.35 cm3/cm3土壤初始含水率,、0.2 cm/d蒸發(fā)量和1 000 mm灌水量條件下的砂壤土、壤土和粉土處理,,收集效率分別僅為11%,、13%和26%,而在相同環(huán)境條件下安裝分散流控制壁的ZTL(ZTLd),,當控制壁高度為20 cm時可使收集效率提升到50%以上,。安裝的分散流控制壁高度隨灌水量的降低、土壤持水能力的提高和土壤蒸發(fā)量的增大而升高,,初始土壤含水率降低會使偏砂性土壤中安裝的ZTLd收集效率降低,,但在壤土和粉土中安裝時可使其收集效率增大,。增加ZTLd安裝深度可能會導致其收集效率降低,在某一特定安裝深度對ZTL收集效率計算的結(jié)果并不適用于其他深度,。

    Abstract:

    Zero-tension lysimeters (ZTL) have been widely applied to monitor soil solution flux and solute transport through soil layers in the vadose zone to the ground water under various conditions in research areas, such as the comprehensive utilization of agricultural water and soil resources as well as soil and water environment conservations. A capillary barrier that can cause flow divergence around the system will be created between undisturbed soil and ZTL as the ZTLs are installed in the field. Meanwhile, the water can overcome the capillary barrier and enter into ZTL only when the soil water is saturated above the contact plane of soil and ZTL. Thus, the efficiency of adopting ZTL for water collection decreases correspondingly. To improve the collection efficiency of ZTL, divergence barrier was added to ZTL (ZTLd), and the factors that can affect the collection efficiency of ZTL were examined, such as soil hydraulic property, soil texture, irrigation rate, initial soil water content and height of divergence barrier, and HYDRUS model was adopted. By measuring soil water flux from seepage face in a two-dimensional model and comparing it with applied flux in a one-dimensional model at the same depth, the collection efficiency was obtained. Three soil textures including sandy loam, loam and silt were considered, and the values of van Genuchten model parameters for test soils were not changed in HYDRUS model. Moreover, irrigation rates ranged from 100 mm to 1 000 mm, and height of divergence barrier ranged from 0 cm to 70 cm. Two initial soil water contents (i.e. 0.15 and 0.35 cm3/cm3) and two soil evaporation rates (i.e. 0.2 and 0.5 cm/d) were adopted. According to the results, the collection efficiency of ZTL without divergence barrier (ZTL0) was low due to lateral diversion of water above the seepage face. As for the ZTL0 under 1 000 mm irrigation rates, the collection efficiencies were 0~11%, 5%~13% and 6%~12% in the sandy loam, loam and silt soil, respectively. Due to the fact that more water was accumulated above the seepage face, the measured soil water flux increased as the divergence barrier was installed. However, the height of divergence barrier was reduced with the increase of irrigation rates as well as the decrease of water holding ability of soil and soil evaporation rates. When the height of divergence barrier was less than 20 cm and irrigation rate reached 1 000 mm under the condition of 0.35 cm3/cm3 initial soil water content and 0.2 cm/d soil evaporation rate, the collection efficiency of ZTLd was increased to 50%. Thus, coarse-textured soils, divergence barrier, low soil evaporation rate and high irrigation rates were preferred so as to measure water flux rate accurately by ZTLd. High initial soil water content (0.35 cm3/cm3) would lead to low collection efficiency of ZTLd in sandy loam, and collection efficiency of ZTL at a certain burial depth might not be suitable for other depths. According to the assumption of the study, all simulations were based on homogeneous soil without consideration of preferential flow, thus there was no effect of size on the collection efficiency. In conclusion, the results of this research can exert significance to the improvement of ZTL.

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侯森,黃元仿,沈重陽,葉回春,張世文.分散流控制壁對無壓滲漏計收集效率影響的定量評價[J].農(nóng)業(yè)機械學報,2015,46(10):198-207. Hou Sen, Huang Yuanfang, Shen Chongyang, Ye Huichun, Zhang Shiwen. Quantitative Evaluation of Effects of Divergence Barrier on Collection Efficiency of Zero-tension Lysimeter Collection Efficiency of Zero-tension Lysimeter[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(10):198-207.

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  • 收稿日期:2015-03-18
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  • 在線發(fā)布日期: 2015-10-10
  • 出版日期: 2015-10-10
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