Journal of Jilin University(Earth Science Edition) ›› 2012, Vol. 42 ›› Issue (6): 1859-1865.

Previous Articles     Next Articles

On the Development of Improved Empirical Formulas for Calculating the Phreatic Water Evaporation for Bare Land

Shu Long-cang1, Jing Yan-dong1, Huang Xiu-dong2, Yu Zhong-bo1,3, Wang Zhen-long4   

  1. 1.State Key Laboratory of HydrologyWater Resources and Hydraulic Engineering, Hohai University, Nanjing210098, China;
    2.Qingdao Hydrology and Water Resources Survey Bureau, Qingdao266071, Shandong,China;
    3.Department of Geoscience, University of Nevada,  NV89154, Las Vegas,USA;
    4.Key Laboratory of Water Conservancy and Water Resources , Anhui Province Water Resources Research Institute, Bengbu233000, Anhui,China
  • Received:2012-04-21 Online:2012-12-26 Published:2012-11-26

Abstract: The undisturbed concretion black and sandy loam soil samples in the Wudaogou (Anhui Province, China) were selected to study the subsurface evaporation-filtration experimental system of the hydrology and water resources. Based on the observation data of phreatic water evaporation from 1992 to 1994 at this site, the relationships between phreatic water evaporation and influencing factors, and the relationships between the phreatic water evaporation coefficient and water surface evaporation were analyzed for bare lands. Based on the above analyses, the goodness of curve fitting of existed empirical formulas such as Ye Shuiting formula and Aviriyanover formula were tested and analyzed by using a nonlinear least squares algorithm, and the improved empirical formulas were developed. The results show that the fitting and prediction results of the improved formulas are much better than the existed formulas, and there is only one parameter to be determined in the improved formulas.

Key words: bare land, phreatic water evaporation, improved empirical formula, nonlinear regression, soils

CLC Number: 

  • P641.132
[1] Zhang Qi, Yang Zhongnian, Shi Wei, Ling Xianzhang, Tu Zhibin. Experiment on Shear Characteristics of Unsaturated Expansive Soil with Initial Moisture Content Under Freezing-Thawing Cycles [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(5): 1544-1550.
[2] Shi Lianghong, Li Shuangyang. Optimal Probability Distribution of Thermal Conductivity Parameters of Canal Foundation Clay in Cold Regions [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(2): 473-482.
[3] Li Changyu, Ma Guixia, Hao Guang, Xu Liang. Effect on Temperature Field of Subgrade Cold Resistive Layer in Seasonal Frost Region [J]. Journal of Jilin University(Earth Science Edition), 2018, 48(4): 1174-1181.
[4] Liu Lanlan, Li Hongru, Chang Qiuying, Li Xiaole, Wang Hongyu, Zhao Chuanhai. Practical Computation Method of Deformation with Water Content Increasing of Unsaturated Soil [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(6): 1790-1798.
[5] Han Aimin,Xiao Junhua,Qiao Chunyuan,Ding Changyang. Experiments on Micro and Macro Behaviors of Nanjing Xiashu Soil Uunder Triaxial Compression [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(6): 1897-1903.
[6] NIE Lei, SU Zhan-dong, XU Li-na, YANG Xu-ran. Formation Environment and Distribution Characteristics of Main Swamp Turfy Soil in China [J]. J4, 2012, 42(5): 1477-1484.
[7] LAN Jing-yan, LIU Hong-shuai, LV Yue-jun, PENG Yan-ju. Effects of Uncertainties of Shear Wave Velocity of Soil Surface Layer on Platform Value of Surface Design Response Spectra [J]. J4, 2012, 42(3): 770-776.
[8] LI Xiang-qun, SUN Chao. Subgrade Frost Heave Features and Calculation Method for Frozen Depth of #102 Highway in Jilin Province [J]. J4, 2010, 40(5): 1128-1132.
[9] LI Xiao-hu, TANG Zhong-li, CHU Feng-you. Transfer Behavior of Heavy Metals in Soil around Cu-Ni Mining Area in Jinchang [J]. J4, 2009, 39(1): 131-0136.
[10] XIE Zhong-lei, YANG Bai-ling, BAO Guo-zhang,DONG De-ming. Fractionation and Its Affecting Factors of Nickel in Tea Garden Soils [J]. J4, 2006, 36(04): 599-604.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] ZHOU Yan-zhang, CHI Bao-ming, LIU Zhong-pei. Mode of Structural Control about Groundwater Pour-in Mechanism in Xiadian Gold Deposits in Shandong Province[J]. J4, 2008, 38(2): 255 -0260 .
[2] ZHANG Yuan, LIU Lian-deng,SUN Jing-gui,CHEN Guo-hua,ZHANG Hong-xi,YAN Fu-chuan, YANG Kai-chun. Two Phase Overprinting Mineralization in Huangbuling Gold Deposit in Northwestern Jiaodong Peninsula[J]. J4, 2008, 38(1): 21 -0026 .
[3] ZHANG Yu-ling,YAO Jun,ZHAO Xiao-bo,CAO Chun-ying,ZHENG Song-zhi. Optimum Conditions of Compound Bioflocculant Producing Bacterium YL3[J]. J4, 2008, 38(5): 864 -0868 .
[4] YU Qiang, REN Zhan-li. Comparison of Geothermal Fields in the Huangling and Dongsheng Areas, Ordos Basin[J]. J4, 2008, 38(6): 933 -0936 .
[5] ZHOU Xiao-dong,SUN Chun-lin,PENG Yu-jing. Reference Sections of Carboniferous and Permian Boundary in Xing’an-Mongolia and Jilin-Heilongjiang Orogenic Belt[J]. J4, 2009, 39(1): 72 -0079 .
[6] CUI Jian-jun, LIU Xiao-chun, HU Juan, QU Wei. Metamorphism of Indosinian Metamorphic Enclaves in the Tongbai Complex, Central China[J]. J4, 2009, 39(4): 618 -629 .
[7] GAO Gui-mei,SU Ke,WANG Wen-ying,GAN Shu-cai,LIU Zhao-jun. Study on Rare Earth and Trace Elements in Oil Shale Samples, Huadian, Jilin Province[J]. J4, 2006, 36(6): 974 -0979 .
[8] AN Yu-ke, NAI Lei. Key-Block Systematic Method and Application in Reinforcement Unstable Rock on Slope[J]. J4, 2011, 41(3): 764 -770 .
[9] ZHANG Yuan-hou, MAO Jing-wen, YU Ming-xu, LI Zong-yan. Mo-Bearing Quartz Vein by Acid Leaching: Evidences from Dahu-Qinnan Mine in Northern Belt of |Xiaoqinling Gold Province, Central China[J]. J4, 2012, 42(4): 1011 -1025 .
[10] ZHU Hong-chen,ZHANG Jiong-fei,QUAN Heng. Two Stages of Mesozoic Lithogenesis and Mineralization in Daxing’anling Mountains[J]. J4, 2005, 35(04): 436 -0442 .