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首页> 外文期刊>Agroforestry Systems >Wind speed reductions as influenced by woody hedgerows grown for biomass in short rotation alley cropping systems in Germany
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Wind speed reductions as influenced by woody hedgerows grown for biomass in short rotation alley cropping systems in Germany

机译:受德国短轮胡同种植系统中生物量生长的木质树篱影响,风速降低

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摘要

The cultivation of fast growing trees on agricultural sites is an area undergoing a growth in interest due to the rising demand for woody biomass as a source of bioenergy. Short rotation alley cropping systems (SRACS) represent a promising possibility to combine annual crops for food, fodder or bioenergy with woody plants for biomass production, doing so through an integration of hedgerows of fast growing trees into conventional agricultural sites. Against such developments, the question has arisen as to what extent hedgerows in SRACS can act as an effective windbreak despite their management-related low height of only a few meters. On the basis of multiannual recorded wind velocity data in high resolution at two sites in Germany, it could be shown that the wind speed on crop alleys was reduced significantly by such hedgerows. At the central point of 24 m wide crop alleys, the wind speed decreased on an annual average basis by more than 50 % when compared to the wind speeds of open field. The overall amount of reduction was strongly dependent on the location within the crop alleys, the height of trees, the distance between two hedgerows, and their orientation. In reflection upon these results, it was concluded that the establishment of SRACS could lead to enhanced soil protection against wind erosion and thus to ecological and economic benefits for agricultural sites.
机译:由于对木质生物质作为生物能源的需求不断增长,因此在农业场所种植速生树木的兴趣正在增长。短轮胡同种植系统(SRACS)通过将速生树木的树篱整合到常规农业场所中来实现将粮食,饲料或生物能源等一年生作物与木本植物结合起来以生产生物质的可能性。面对这样的事态发展,人们提出了一个问题,那就是尽管SRACS中的树篱与管理相关的高度仅为几米,但它们在多大程度上可以起到有效的防风作用。根据德国两个地点高分辨率的多年记录风速数据,可以证明,这种篱笆使农作物小巷的风速大大降低了。在24 m宽的农作物小巷的中心点,与空旷地区的风速相比,风速每年平均降低50%以上。减少的总量在很大程度上取决于农作物巷内的位置,树木的高度,两个树篱之间的距离及其方向。通过对这些结果的反思,可以得出结论,建立SRACS可以增强土壤的抗风蚀能力,从而为农业场所带来生态和经济利益。

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