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5篇 您的检索式:作者名="Tianshan Zha"
    题名 作者 年代 出处 被引量
1Radial profile of sap flow velocity in mature Xinjiang poplar(Populus alba L. var. pyramidalis) in Northwest China显示文摘Estimation of the transpiration rate for a tree is generally based on sap flow measurements within the hydro-active stem xylem. In this study, radial variation of sap flow velocity(Js) was investigated at five depths of the xylem(1, 2, 3, 5 and 8 cm under the cambium) in three mature Xinjiang poplar(Populus alba L. var. pyramidalis) trees grown at the Gansu Minqin National Studies Station for Desert Steppe Ecosystem from May to October 2011. Thermal dissipation probes of various lengths manufactured according to the Granier's design were installed into each tree for simultaneous observation of the radial patterns of Js through the xylem. The radial patterns were found to fit the four-parameter GaussAmp equation. The peak Js was about 27.02±0.95 kg/(dm2?d) at approximately 3 to 5 cm deep from the cambium of the three trees,and the lowest Js appeared at 1 cm deep in most of the time. Approximately 50% of the total sap flow in Xinjiang poplar occurred within one-third of the xylem from its outer radius, whereas 90% of the total sap flow occurred within two-fifth of the xylem. In addition, the innermost point of the xylem(at 8-cm depth), which appeared as the penultimate sap flow in most cases during the study period, was hydro-active with Js,8 of 7.55±3.83 kg/(dm2?d). The radial pattern of Js was found to be steeper in midday than in other time of the day, and steeper diurnal fluctuations were recorded in June, July and August(the mid-growing season). Maximum differences between the lowest Js(Js,1 or Js,8) and the highest Js(Js,3 or Js,5) from May through October were 12.41, 17.35, 16.30, 18.52, 12.60 and 16.04 g/(cm2?h), respectively. The time-dependent changes of Js along the radial profile(except at 1-cm depth) were strongly related to the reference evapotranspiration(ET0). Due to significant radial variability of Js, the mean daily sap flow at the whole-tree level could be over-estimated by up to 29.69% when only a single probe at depth of 2 cm was used. However, the accuracy of the estimation of sap flow in Xinjiang poplar could be significantly improved using a correction coefficient of 0.885.HongZhong DANG TianShan ZHA JinSong ZHANG Wei LI ShiZeng LIU 2014Journal of Arid Land2014,6,5:11
2Soil respiration in a mixed urban forest in China in relation to soil temperature and water content显示文摘Wenjing Chen Xin Jia Tianshan Zha Bin Wu Yuqing Zhang Chunyi Li Xiaoping Wang Guimei He Haiqun Yu Guopeng Chen 2013European Journal of Soil Biology2013,,:1
3Total and Component Carbon Fluxes of a Scots Pine Ecosystem from Chamber Measurements and Eddy Covariance显示文摘Tianshan Zha Zisheng Xing Kai-Yun Wang 2007Annals of Botany2007,99,:1
4Effects of elevated carbon dioxide concentration and temperature on needle growth, respiration and carbohydrate status in field-grown Scots pines during the needle expansion period显示文摘Tianshan Zha 2001Plant Biology2001,21,:1
5Seasonal variation in energy and water fluxes in a pine forest: an analysis based on eddy covariance and an integrated model显示文摘Wang Kaiyun Kellomaki S Zha Tianshan 2004Ecological Modelling2004,179,:1
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