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干旱区地理 ›› 2014, Vol. 37 ›› Issue (4): 777-785.

• 生态与环境演变 • 上一篇    下一篇

青海湖克土沙地沙棘林的防风固沙机制与效益

吴汪洋1,张登山1,2,田丽慧1,魏殿生1,赵超1,贾飞飞1   

  1. 1    北京师范大学环境演变与自然灾害教育部重点实验室, 北京    100875;    2    青海省农林科学院, 西宁    810016
  • 收稿日期:2013-09-22 修回日期:2013-11-07 出版日期:2014-07-25
  • 通讯作者: 张登山(1961-),男,博士生导师,研究员,主要从事荒漠化防治及环境演变. Email:dshzhang@bnu.edu.cn
  • 作者简介:吴汪洋(1988-),男,硕士研究生,主要研究水土保持与荒漠化防治. Email:bnuwwy@yeah.net
  • 基金资助:

    林业公益性行业科研专项“青海湖周抗寒抗旱固沙植物筛选与快繁研究”(201004025)

Mechanism and benefit of wind-prevention and sand-fixation of Hippophae rhamnoides forestation in Ketu Sandy Land around Qinghai Lake

WU  Wang-yang1,ZHANG  Deng-shan1,2,TIAN  Li-hui1,WEI  Dian-sheng1,ZHAO  Chao1,JIA  Fei-fei1   

  1. 1   Key Laboratory of Environmental Change and Natural Disaster Sponsored by State Education Ministry, Beijing  100875, China;2   Qinghai Academy of Agriculture and Forestry Sciences, Xining  810016, Qinghai, China
  • Received:2013-09-22 Revised:2013-11-07 Online:2014-07-25

摘要: 沙棘造林是青海湖克土沙地主要治沙措施,通过改变风速廓线垂向风速增加幅度、增加地表粗糙度和改变风沙流结构的机制实现沙棘林的防风固沙效益。根据2010-2012年连续3 a的沙棘沙丘与流动沙丘的春季风沙观测和植被调查,沙棘沙丘的风速廓线对数递增规律、输沙量和沙粒粒径的指数递减规律均被破坏;2012年沙棘沙丘在1 m高度以下的防风作用增加到22.75%,总体固沙效益较2010年增加近10%;同时,沙棘林的防风固沙效益随着风速增大而减弱,随植株高度与冠幅增加而增强。综合风沙防护机制与效益,沙棘造林技术在克土沙地以及整个高寒沙地生态治理中极具推广意义。

关键词: 沙棘造林, 防风固沙, 风速增加幅度, 风沙流结构

Abstract: Hippophae rhamnoides is a pioneer species of controlling desertification with strong ecological improvement and adaptability. Since 2008 when the measure of Hippophae rhamnoides forestation was firstly implemented in Ketu sandy land in the east of Qinghai Lake,the areal wind-sand activities and hazards have been obviously decreased,but the functional mechanism and promoting feasibility of this measure in the high-altitude and climate-cold areas need a far-researching and brief evaluation. Through a series of field wind-sand and vegetation observations in each spring of 2010,2011 and 2012,the wind-profiles and wind-flow structures of both H. rhamnoides dune and mobile dune could be compared,and mainly analyzed the mechanism and benefits of wind-prevention and sand-fixation by rhamnoides under some statistics of wind speed amplification,surface roughness,sand transport,etc. Firstly,the logarithmic law of wind-profile of the rhamnoides dune was totally broken,and as well as the exponential law of sediment discharge and sand-grain size distributing with the height,those were reflected by a higher wind increasing rate in the low and middle layers,an increasing percentage of sand transport in the upper layer,and a major distribution of coarser grain in the middle layer,which all were basically caused by the vertical lifting function of air flow and air energy accumulation in the plant canopies. Secondly,the benefit of [H. rhamnoides] wind-prevention changed with the height and the year. The wind-prevention function of the low layer is 2.0-3.7 times that of the middle layer,and 4.0-7.2 times that of the upper layer. Moreover,the average wind-prevention effects under the height of one meter increased to 22.75% in 2012 over twice as many as in 2010. Also,the benefit of [H. rhamnoides] sand-fixation increased yearly which is about 80% in 2010 and 88.9% in 2012 under a wind speed of 10 meters per minute. Thirdly,the two benefits would decrease slowly with the increasing of the wind velocity,but get raised yearly with the vegetation height and canopy,and the area and thickness of the crust would propel to a more significant benefit of preventing the wind erosion. Actually,with the protection of straw-checkerboards,the survival or preserving rate of H. rhamnoides would get improved and take better effects of preventing wind and sand hazards,however,some new attentions should be transferred to the forestation density in different landforms and soil properties for better ecological functions. Under those comprehensive study of controlling process and benefits,the technique of Hippophae rhamnoides forestation was conclusively applied to the work of controlling desertification in Ketu sandy land,even more,it was valuable to extend the measure to the whole alpine region.

Key words: Hippophae rhamnoides forestation, wind-prevention and sand-fixation, wind increasing rate, wind-sand flow structure

中图分类号: 

  • S727.23