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Treatment method applied to high and steep slope mine
The invention discloses a treatment method applied to a high and steep slope mine, and the method comprises the steps: selecting an unmined mountain in an area where the slope mine is located as a mountain expected to be treated, uniformly arranging a plurality of data collection points on a slope of the mountain expected to be treated, and reserving the data collection points with the same inclination as the slope mine, establishing a plant data acquisition area, acquiring the maximum planting density and the minimum planting density of the plants in the plant data acquisition area as the planting density reference range of the plants planted on the high and steep slope mine, identifying the plant species, and calculating the area, suitable for planting shade-tolerant low plants, around the plants. According to the scheme, the undeveloped mountain beside the mine is researched, plant planting research is carried out in combination with the mountain with the same inclination as the high and steep slope of the mine, the treatment precision can be improved to the maximum extent, and the technical problems that the plant planting difficulty of the high and steep slope of the mine is large, the survival condition is poor, and the soil fixation difficulty of plant rhizomes is large are effectively solved.
本发明公开了一种应用于高陡边坡矿山的治理方法,包括:选择边坡矿山所在区域内的未被开采山体作为期望治理山体,在期望治理山体的斜坡上均匀设置若干个数据采集点,并保留与边坡矿山斜度相同的数据采集点,建立植物数据采集区,获取植物数据采集区内植物的最大种植密度、最小种植密度作为高陡边坡矿山上种植植物的种植密度参考范围,并识别植物种类,计算植物周围适合种植耐阴低矮植物的面积。本方案通过对矿山旁的未开发山体进行研究,结合与矿山高陡边坡的斜度相同的山体进行植物种植研究,能最大限度的提升治理的精度,有效解决了矿山高陡边坡的植物种植难度大、生存条件恶劣以及植物根茎固土难度大等技术难题。
Treatment method applied to high and steep slope mine
The invention discloses a treatment method applied to a high and steep slope mine, and the method comprises the steps: selecting an unmined mountain in an area where the slope mine is located as a mountain expected to be treated, uniformly arranging a plurality of data collection points on a slope of the mountain expected to be treated, and reserving the data collection points with the same inclination as the slope mine, establishing a plant data acquisition area, acquiring the maximum planting density and the minimum planting density of the plants in the plant data acquisition area as the planting density reference range of the plants planted on the high and steep slope mine, identifying the plant species, and calculating the area, suitable for planting shade-tolerant low plants, around the plants. According to the scheme, the undeveloped mountain beside the mine is researched, plant planting research is carried out in combination with the mountain with the same inclination as the high and steep slope of the mine, the treatment precision can be improved to the maximum extent, and the technical problems that the plant planting difficulty of the high and steep slope of the mine is large, the survival condition is poor, and the soil fixation difficulty of plant rhizomes is large are effectively solved.
本发明公开了一种应用于高陡边坡矿山的治理方法,包括:选择边坡矿山所在区域内的未被开采山体作为期望治理山体,在期望治理山体的斜坡上均匀设置若干个数据采集点,并保留与边坡矿山斜度相同的数据采集点,建立植物数据采集区,获取植物数据采集区内植物的最大种植密度、最小种植密度作为高陡边坡矿山上种植植物的种植密度参考范围,并识别植物种类,计算植物周围适合种植耐阴低矮植物的面积。本方案通过对矿山旁的未开发山体进行研究,结合与矿山高陡边坡的斜度相同的山体进行植物种植研究,能最大限度的提升治理的精度,有效解决了矿山高陡边坡的植物种植难度大、生存条件恶劣以及植物根茎固土难度大等技术难题。
Treatment method applied to high and steep slope mine
一种应用于高陡边坡矿山的治理方法
HAO JIE (author) / SUN YAFEI (author) / HAN LIN (author) / AHN SUNG-YONG (author) / ZHAO ZHENWEI (author) / LUO ZHENJIANG (author) / ZHENG LISHUANG (author) / DI SHENGTONG (author)
2023-06-23
Patent
Electronic Resource
Chinese
IPC:
G06Q
Datenverarbeitungssysteme oder -verfahren, besonders angepasst an verwaltungstechnische, geschäftliche, finanzielle oder betriebswirtschaftliche Zwecke, sowie an geschäftsbezogene Überwachungs- oder Voraussagezwecke
,
DATA PROCESSING SYSTEMS OR METHODS, SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL, SUPERVISORY OR FORECASTING PURPOSES
/
E02D
FOUNDATIONS
,
Gründungen
/
G01S
RADIO DIRECTION-FINDING
,
Funkpeilung
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G06F
ELECTRIC DIGITAL DATA PROCESSING
,
Elektrische digitale Datenverarbeitung
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G06V
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