南京林业大学学报(自然科学版) ›› 1986, Vol. 10 ›› Issue (02): 47-57.doi: 10.3969/j.jssn.1000-2006.1986.02.006

• 研究论文 • 上一篇    下一篇

森林水文生态效益计量评价体系的研究

霍应强;徐孝庆;田荣昌   

  1. 广东林业科学研究所;林业部调查规划院;林业部调查规划院
  • 出版日期:1986-06-18 发布日期:1986-04-18

STUDIES ON TAKING QUANTITATIVE MEASUREMENT AND ECONOMICAL EVALUATION OFHYDRO-ECOLOGICAL BENEFITS OF FORESTS

Huo Yingqiang (Forestry Research Institute, Guangdong Province)Xu Xiaoqing & Tian Rongchang   

  1. Institute of Forest Inventory and Planning, Ministry of Forestry
  • Online:1986-06-18 Published:1986-04-18

摘要: <正>本文所论述的系统包括三类技术方法:(1)利用电子计算机对现有资料定量分析,以便在一个大的范围内(如一国或一省)建立数学模型,并同林区划分联系起来,(2)到林场或其他森林经营企业作一次考案,以便发展多种用途的林业,(3)建立一个长期固定的实验站,以便观察和记录在不同集水处或一些典型森林群落的森林效益,提供计量和评价的参数。文中分别给出了上述三类技术方法的实例,它们构成了一个计量和评价森林水文生态效益的f完整系统。

Abstract: This paper deals with a system of taking quantitative measurement and economical evaluation of hydro-ecological benefits of forest which consists of three scopes of regional extents and throe categories of technical methods, namely (1) analysing the present data by means of computer DJS-121 to establish mathematical models on a vast scope such as the whole nation or a whole province, which may be combined with the work of forestry zoning in the same scope. An example of Heilongjiang Province is offered in this paper; (2) making an expedition to a tree farm or a forest area for the purpose of developing multiple-use forestry, which must be carried on in place practically, here we put forward [an example of Zhuting Forest Area, Zhuzhou County, Hunan Province; (3) setting up a fixed long term experiment station in various small watershed or some typical forest communities, from which scientific parameters of quantitative measurement and economical evaluation can be obtained. Here we hold out some examples such as a forested watershed and a wilderness watershed, as well as a Pinus massoniana stand and a Quercus acutissima stand. It is obvious that they can be mutually complementary and check each other. A forest-soil type is a basic functional unit in taking quantitative measurement and economical evaluation of hydro-ecological benefits of a forest. It is necessary to have a good forest situation along with a deep soil zone to support a satisfactory conservation capacity of water supply in a forest ecosystem. Based on storage capacity of gravitational water with reference to infiltration rate, we grade the forest-soil types into five different grades of conservation capacity of water supply respectively.