基于園林景觀改造的生態(tài)化農(nóng)業(yè)示范園構建實踐及規(guī)劃——以司馬礦區(qū)為研究對象
[Abstract]:[objective] to explore the influence of landscape transformation on ecological agriculture demonstration garden in Sima mining area, from the overall landscape pattern planning to the concrete ecological adaptation design, to find out the ways to control the coal mine subsidence area and restore the ecosystem structure. [methods] taking the ecological reclamation project of coal mining collapse and abandoned land in Sima Mine of Shanxi Province as an example, the construction principle of agricultural demonstration garden in coal mine subsidence area was discussed by using ecology and landscape theory, and the ecological construction orientation was carried out according to the actual situation of mining area. The ecological landscape planning of mining area is carried out by applying the landscape design technology of ecological network, ecological landscape, ecological economy, ecological culture and so on, from the whole landscape pattern planning to the concrete ecological adaptive design thinking. [results] the first phase of the land reclamation project in Sima mining area, the dredging of silt and tombs in the water park, the supporting facilities of the water park in the second phase, and the supporting facilities in the male grave area, The design and construction of eco-agricultural demonstration garden has been applied in road engineering and some achievements have been obtained. The third phase of landscape greening project and water supply and drainage project are to be built. The development of cultural resources and various recreational projects should further adhere to the principle of ecological re-engineering. [conclusion] Ecological reengineering in landscape design of subsidence area must take into account the needs of human life and social development, and should develop towards tourism and agriculture.
【作者單位】: 上海思博職業(yè)技術學院藝術設計學院;
【基金】:2015年度上海市教育科學研究院項目“高職院校建立和完善適應發(fā)展需求的環(huán)境藝術設計專業(yè)設置快速響應機制研究”(C150052)
【分類號】:F327;TU986.5
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