Abstract:
본 발명은 자연수변림의 생태 천이를 반영하여 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있는 한강유역권 수변녹지의 구축방법에 관한 것으로, 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있다.
Abstract:
본 발명은 자연수변림의 생태 천이를 반영하여 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있는 섬진ㆍ영산강유역권 수변녹지의 구축방법에 관한 것으로, 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있다.
Abstract:
PURPOSE: A method of constructing a riparian green zone around Han river watershed using ecology planting model and technique is provided to decide a species composition and the density of planting appropriate for a growth environment, and directly establish an ecological plant assembled with multilayer planting. CONSTITUTION: A riparian green zone is established in the protected lowland around Han river watershed. Two units of pine tree, two units of queritron, two units of ash tree, three units of Styrax obssia, three units of Quercus mongolica, two units of Carpinus laxiflora Blume, two units of Tila mandshurica, and two units of wild mulberry tree are planted per a hundred square meter of a planting area. Two units of the pine tree, one unit of Populus Maximowiczii, one unit of wild pear tree, one unit of ginger tree, two units of Acer trifluorum, two units of Styrax obassia, and two units of ash tree are planted per a hundred square meter of the planting area. Four units of queritron, three units of oriental oak, one unit of wild cherry tree, four units of ash tree, three units of Styrax obassia, four units of wild pear tree, and four units of Syringareticulata var.mand shurica. Hara are planted per a hundred square meter of the planting area. Three units of pine tree, two units of queritron, one unit of ash tree, two units of Styrax obassia, two units of Carpinus, two units of white oak, and two units of snowbell are planted per a hundred square meter of the planting area. Two units of pine tree, two units of zelkova, one unit of Carpinus, two units of snowbell, and one unit of Cornus walteri are planted per a hundred square meter of the planting area. Two units of Quercus mongolica, two units of ash tree, two units of Fraxinus mandshurica, one unit of elm tree, one unit of willow tree, three units of Amur maple, three units of Maakia amurensis, and three units of Magnolia Sieboldii are planted per a hundred square meter of the planting area. Two units of queritron, two units of elm tree, two units of Carpinus, one tree of oriental oak, two units of Acer pseudosieboldianum, and two units of Styrax obassia are planted per a hundred square meter of the planting area. Three units of Amur maple, two units of ash tree, two units of Styrax obassia, two units of Maakia amurensis, four units of Acer pseudosieboldianum, and three units of Pyrus pyrifolia are planted per a hundred square meter of the planting area. Three units of Amur maple, three units of willow tree, one unit of Cornus controversa, two units of Malus baccata Borkh, two units of wild mulberry tree, and one unit of Prunus persica batsch var. davidiana Max are planted per a hundred square meter of the planting area. Two units of wild-walnut tree, two units of ash tree, three units of wild mulberry tree, two units of Acer mono Max, two units of elm tree, two units of Quercus mongolica, and two units of Magnolia Sieboldii are planted per a hundred square meter of the planting area. Three units of pine tree, three units of Carpinus laxiflora Blume, one unit of white oak, two units of Acer pseudosieboldianum, and one unit of Magnolia Sieboldii Quercus mongolica are planted per a hundred square meter of the planting area.. [Reference numerals] (AA) Quercus mongolica(upper layer target species of trees); (BB) Ash tree(upper layer target species of trees); (CC) Fraxinus mandshurica(upper layer target species of trees); (DD) Elm tree(upper layer target species of trees); (EE) Willow tree(upper layer target species of trees); (FF) Amur maple(middle layer target species of trees); (GG) Maackia amurensis(middle layer target species of trees); (HH) Magnolia Sieboldii(middle layer target species of trees)
Abstract:
PURPOSE: A method of establishing a riparian green zone around Youngsan river watershed is provided to secure an original function of the riparian green zone reflecting the ecological succession of riparian buffer, and to minimize the managing cost of natural resources after planting. CONSTITUTION: A riparian green zone is established in the protected lowland placed around Youngsan river watershed. Three units of pine tree, four units of queritron, five units of Sapium japonicum, two units of Quercus acutissima Carruth, two units of Albizia julibrissin Durazz, two units of Neolitsea sericea, and two units of snowbell are planted per a hundred square meter of a planting area. Three units of pine tree, two units of Platycaria Strobilacea, two units of the queritron, two units of Meliosma myriantha, one unit of Oriental cherry tree, and one unit of white oak are planted per a hundred square meter of the planting area. Three units of pine tree, two units of Carpinus laxiflora Blume, three units of queritron, two units of snowbell, two units of Sapium japonicum, one unit of snowbell, three units of Ilex macropoda Miquel, and two units of Stewartia pseudocamelia are planted per a hundred square meter of the planting area. Two units of pine tree, two units of oriental oak, two units of Carpinus laxiflora Blume, one unit of Oriental cherry tree, one unit of Albizia julibrissin Durazz, two units of Sapium japonicum, and one unit of snowbell are planted per a hundred square meter of the planting area. Three units of zelkova, two units of queritron, one unit of Carpinus laxiflora Blume, two units of Fraxinus sieboldiana, four units of snowbell, two units of Euonymus sachalinesis, two units of Acer mono Max, and two units of Meliosma myriantha are planted per a hundred square meter of the planting area. Two units of Celtis sinensis, one unit of Acer mono Max, two units of Acer pseudosieboldianum, one unit of Fraxinus rhynchophylla Hance, two unit of Sapium japonicum, one unit of Cornus walteri, one unit of Lindera erythrocarpa makino, four units of Fraxinus rhynchophylla Hance, two units of snowbell, two units of Carpinus cordata Blume, and one unit of Styrax obassia are planted per a hundred square meter of the planting area. Seven units of pine tree, two units of Platycaria Strobilacea, two units of snowbell, three units of Carpinus laxiflora Blume, three units of zelkova, and two units of Quercus acutissima Carruth are planted per a hundred square meter of the planting area. Two units of pine tree, one unit of Quercus acutissima Carruth, one unit of queritron, two units of white oak, two units of snowbell, two units of Acer pseudosieboldianum, and one unit of Meliosma oldhamii are planted per a hundred square meter of the planting area. Three units of oriental oak, three units of pine tree, one unit of Carpinus laxiflora Blume, one unit of snowbell, two units of Styrax obassia, and two units of zelkova are planted per a hundred square meter of the planting area. Three units of oriental oak, two units of Euscaphis japonica, two units of white oak, three units of Ilex cornuta Lindley et Paxton, three units of snowbell, and one unit of Lindera erythrocarpa makino are planted per a hundred square meter of the planting area. Four units of maple, three units of Carpinus laxiflora Blume, two units of Meliosma myriantha, one unit of Acer mono Max, two units of nutmeg tree, two units of Celtis sinensis, and two units of Sapium japonicum are planted per a hundred square meter of the planting area. Two units of zelkova, one unit of white oak, two units of Carpinus laxiflora Blume, four units of camelia, two units of Sapium japonicum, two units of Meliosma myrianth, two units of chinquapin, two units of cornelian cherry, and two units of Cornus controversa are planted per a hundred square meter of the planting area. Six units of pine tree, two units of snowbell, three units of Carpinus laxiflora Blume, three units of Meliosma myriantha, and two units of white oak are planted per a hundred square meter of the planting area. [Reference numerals] (AA) Zelkova(upper layer target species of trees); (BB) Quercitron(upper layer target species of trees); (CC) Carpinus laxiflora Blume(upper layer target species of trees); (DD) Fraxinus sieboldiana(upper layer target species of trees); (EE) Snowbell(middle layer target species of trees); (FF) Euonymus sachalinensis(middle layer target species of trees); (GG) Acer mono Max(middle layer target species of trees); (HH) Meliosma myriantha(middle layer target species of trees)
Abstract:
본 발명은 자연수변림의 생태 천이를 반영하여 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있는 금강유역권 수변녹지의 구축방법에 관한 것으로, 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있다.
Abstract:
본 발명은 자연수변림의 생태 천이를 반영하여 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있는 낙동강유역권 수변녹지의 구축방법에 관한 것으로, 수변녹지 본연의 기능을 확보하고, 식재 후 자연관리에 의한 관리비용을 최소화할 수 있다.
Abstract:
PURPOSE: A method of establishing a riparian green zone around Nakdong river watershed is provided to secure an original function of the riparian green zone reflecting the ecological succession of riparian buffer, and to minimize the managing costs of natural resources after planting. CONSTITUTION: A riparian green zone is established in the protected lowland placed around Nakdong river watershed. Five units of pine tree, three units of ginger tree, three units of Acer pseudosieboldianum, three units of queritron, and two units of Stewartia pseudocamelia are planted per a hundred square meter of a planting area. Three units of pine tree, two units of Carpinus laxiflora Blume, three units of oriental oak, one unit of Fraxinus rhynchophylla Hance, three units of snowbell, and three units of queritron are planted per a hundred square meter of the planting area. Two units of Alnus hirsute, two units of queritron, two units of pine tree, one unit of willow tree, three units of Lindera erythrocarpa makino, three units of snowbell and two units of Cornus controversa are planted per a hundred square meter of the planting area. Two units of Celtis sinensis, two units of Platycaria Strobilacea, two units of queritron, three units of oriental oak, and two units of dentata oak are planted per a hundred square meter of the planting area. Seven units of pine tree, one unit of Quercus mongolica, two units of ginger tree, four units of queritron, three units of snowbell, three units of Lindera erythrocarpa makino, and three units of Acer pseudosieboldianum are planted per a hundred square meter of the planting area. Two units of pine tree, one unit of Carpinus laxiflora Blume, three units of queritron, one unit of Albizia julibrissin Durazz, three units of wild cherry tree, two units of Picrasma quassioides, and two units of Lindera erythrocarpa makino are planted per a hundred square meter of the planting area. Three units of queritron, three units of pine tree, three units of oriental oak, three units of snowbell, and two units of Styrax obassia are planted per a hundred square meter of the planting area. Three units of queritron, one unit of Fraxinus rhynchophylla Hance, three units of Magnolia Sieboldii, three units of Acer pseudosieboldianum, three units of Meliosma oldhamii, and three units of Acer mono Max are planted per a hundred square meter of the planting area. [Reference numerals] (AA) Pine tree(upper layer target species of trees); (BB) Carpinus laxiflora Blume(upper layer target species of trees); (CC) Oriental oak(upper layer target species of trees); (DD) Ash tree(middle layer target species of trees); (EE) Snowbell(middle layer target species of trees); (FF) Quercitron(middle layer target species of trees)
Abstract:
The present invention relates to a method and a system for creating a waterside green area and evaluating performance thereof using a computer program. The present invention relates to a method for creating a waterside green area by using a waterside green area creation system in which a storage part stores a waterside green area creating model type according to a growth environment of a waterside green area, a planting standard according to the waterside green area creating model type and information about planting and maintenance costs according to a target year of the waterside green area to create in advance. The method of the present invention includes the steps of: (A) setting a growth environment of a waterside green area including a basin zone, a climate zone and an environmental gradient through an input part; (B) displaying a list including a creating model type of a waterside green area which can be set in the growth environment of a set waterside green area among creating model types of a waterside green area stored in the storage part on a monitor; (C) setting one of the creating model types of the waterside green area included in the list through the input part; (D) selecting a target year of the waterside green area to create as one of a short term, a middle term and a long term through the input part; and (E) outputting the pre-determined planting standard and the pre-determined planting and maintenance costs stored in the storage part on the monitor, according to the set waterside green area creating model type and the selected target year of the waterside green area.According to the present invention, provided is a method for creating a waterside green area and evaluating performance thereof using a computer program which can understand the waterside green area creating method easily and can grasp the value and the performance easily after creation, by systemizing essential basic information of waterside green area creation and performance valuation with a computer program. Also, according to the present invention, the method can perform waterside green area design easily including planting tree species appropriate for a target area and standard, planting method etc. [Reference numerals] (110) Input part; (120) Storage part; (130) Waterside green area creating model type selection part; (140) Growth based information output part; (150) Layer based target tree species selecting part; (160) Group configuration selecting part; (170) Planting date and planting reference selection part; (180) Monitor
Abstract:
PURPOSE: A method for estimating carbon storage amount and annual carbon absorption amount of deciduous landscape trees is provided to recover environment, and to help the environmental policy making. CONSTITUTION: A method for estimating carbon storage amount and annual carbon absorption amount of deciduous landscape trees comprises: a step of measuring the diameter at breast height of the deciduous landscape trees such as maple trees, elm-like trees, Prunus yedoensis trees, and ginkgo trees; a step of calculating carbon storage amount by equations 1-4; and a step of calculating annual carbon absorption amount by equations 5-8.
Abstract:
PURPOSE: A method of establishing a riparian green zone around watershed is provided to decide a species composition and the density of planting appropriate for a growth environment, and directly establish an ecological plant assembled with multilayer planting. CONSTITUTION: A riparian green zone is established in the protected lowland placed around Keum river watershed. Four units of pine tree, one unit of elm tree, one unit of snowbell, three units of Sapium japonicum, two units of Lindera erythrocarpa makino, and two units of Carpinus laxiflora Blume are planted are planted per a hundred square meter of a planting area. Two units of pine tree, two units of Carpinus laxiflora Blume, one unit of snowbell, one unit of zelkova, one unit of snowbell, one unit of queritron, and one unit of Acer pseudosieboldianum are planted per a hundred square meter of the planting area. One unit of white oak, one unit of Acer mono Max, two units of snowbell, two units of Lindera erythrocapa makino, two units of styrax obassia, two units of Acer pseudosie boldianum, two units of wild pear tree, and one unit of Sapium japoricum are planted per a hundred square meter of the planting area. Two units of Cornus controversa, one unit of Acer mono Max, one unit of Albizia julibrissin Durazz, two units of snowbell, two units of Lindera erythrocarpa makino, two units of Aphananthe aspera, and two units of Acer pseudosieboldianum are planted per a hundred square meter of the planting area. Five units of pine tree, two unit of Carpinus laxiflora Blume, one unit of oriental oak, three units of snowbell, three units of Acer pseudosieboldianum, three units of styrax obassia, and three units of Lindera erythrocarpa makino are planted per a hundred square meter of the planting area. Three units of pine tree, two units of oriental oak, two units of Lindera erythrocarpa makino, four units of Sapium japonicum, four units of fraxinus sieboldiana, two units of snowbell, two units of Carpinus laxiflora Blume, two units of Quercus acutissima Carruth, and two units of white oak are planted per a hundred square meter of the planting area. One unit of queritron, one unit of oriental oak, two units of Cornus controversa, two units of styrax obassia, two units of Acer mono Max, and two units of snowbell are planted per a hundred square meter of the planting area. [Reference numerals] (AA) Pine tree(upper layer target species of trees); (BB) Carpinus laxiflora Blume(upper layer target species of trees); (CC) Snowbell(upper layer target species of trees); (DD) Zelkova(upper layer target species of trees); (EE) Snowbell(middle layer target species of trees); (FF) Quercitron(middle layer target species of trees); (GG) Acer pseudosieboldianum(middle layer target species of trees); (HH) Rapid growth trees