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应用生态学报 ›› 2010, Vol. 21 ›› Issue (08): 1940-1946.

• 研究报告 • 上一篇    下一篇

黑河下游柽柳种群地上生物量及耗水量的空间分布

彭守璋1,赵传燕1**彭焕华,郑祥霖1,许仲林2   

  1. 1兰州大学干旱与草地生态教育部重点实验室,兰州 730000;2兰州大学西部环境教育部重点实验室,兰州730000
  • 出版日期:2010-08-18 发布日期:2010-08-18

Spatial distribution of Tamarix ramosissima aboveground biomass and water consumption in the lower reaches of Heihe River, Northwest China.

PENG Shou-zhang1, ZHAO Chuan-yan1, PENG Huan-hua2, ZHENG Xiang-lin1,XU Zhong-lin2   

  1. 1Ministry of Education Key Laboratory of Arid and Grassland Ecology, Lanzhou University, Lanzhou 730000, China|2Ministry of Education Key Laboratory of Western China’s Environmental Systems, Lanzhou University, Lanzhou 730000,China
  • Online:2010-08-18 Published:2010-08-18

摘要: 以黑河下游柽柳(Tamarix ramosissima)种群为研究对象,通过野外观测,建立柽柳地上生物量与简便易测因子间的关系;利用研究区的高分辨率影像(QuickBird)进行决策树分类,提取出柽柳易测因子的空间分布,估算研究区柽柳生物量的空间分布;在此基础上,借助于柽柳的蒸腾系数(300)计算出整个研究区内柽柳的耗水量.结果表明:研究区柽柳地上生物量为69644.7 t,单位面积生物量为0.78 kg·m-2;河岸边柽柳生境适宜,生物量较大;研究区柽柳蒸散的总水量为2.1×107 m3,多年平均耗水量的空间分布范围在30~386 mm.

关键词: 黑河下游, 柽柳, 地上生物量, 耗水量, 高分辨率影像, 珊瑚人工繁育, 循环海水培育系统, 珊瑚疾病

Abstract: Based on the field observation on the Tamarix ramosissima populations in the lower reaches of Heihe River, the relationship models between the aboveground biomass of T. ramosissima and its morphological features (basal diameter, height, and canopy perimeter) were built. In the mean time, the land use/cover of the study area was classified by the decision tree classification with high resolution image (QuickBird), the distribution of T. ramosissima was extracted from classification map, and the morphological feature (canopy perimeter) of T. ramosissima was calculated with ArcGIS 9.2. On the bases of these, the spatial distribution of T. ramosissima aboveground biomass in the study area was estimated. Finally, the spatial distribution of the water consumption of T. ramosissima in the study area was calculated by the transpiration coefficient (300) and the aboveground biomass. The results showed that the aboveground biomass of T. ramosissima was 69644.7 t, and the biomass per unit area was 0.78 kg·m-2. Spatially, the habitats along the banks of Heihe River were suitable for T. ramosissima, and thus, this tree species had a high biomass. The total amount of water consumption of T. ramosissima in the study area was 2.1×107 m3, and the annual mean water consumption of T. ramosissima ranged from 30 mm to 386 mm.

Key words: the lower reaches of Heihe River, Tamarix ramosissima, aboveground biomass, water consumption, QuickBird images, coral artificial propagation, RAS, FITAS, coral disease