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Intelligent three-dimensional rainwater recycling ecological landscape corridor and working process thereof
The invention discloses an intelligent three-dimensional rainwater recycling ecological landscape corridor. The corridor comprises multiple corridor columns, the top ends of the multiple corridor columns jointly support a corridor eave, the corridor eave is slidably connected with a first purline and a second purline through multiple symmetrically-arranged supporting sheet plates, the first purline and the second purline are rotationally connected through a connecting rod, and a planting groove is formed in the middle of the corridor eave. The invention further discloses a working process ofthe intelligent three-dimensional rainwater recycling ecological landscape corridor. The working process comprises the following steps that S1, rainfall is monitored; S2, the angles of the first purline and the second purline are adjusted; S3, rainwater is recycled and stored; and S4, plants are irrigated. According to the corridor and the method, the structure is novel, the rainfall can be monitored through monitoring devices so that the rainwater can be collected within a proper period of time, and the collected rainwater can be in a clean state; and in addition, when plants lack water and soil is dry, the rainwater in a water storage tank can automatically irrigate roots of the plants so that the plants can healthily grow.
本发明公开了一种智能立体雨水回用的生态景观廊道,包括多根廊柱,多根所述廊柱的顶端共同支撑有廊檐,所述廊檐通过多个对称设置的支撑片板滑动连接有第一檩条和第二檩条,且第一檩条与第二檩条之间通过连杆转动连接,所述廊檐的中部设置有种植槽;本发明还公开了一种智能立体雨水回用的生态景观廊道的工作流程,包括以下步骤:S1:降雨监测;S2:调整第一檩条与第二檩条角度;S3:回收并储存雨水;S4:灌溉植物。本发明结构新颖,通过监测装置可以对降雨量进行检测,从而在合适的时间内收集雨水,使收集到的雨水均为洁净状态,此外,在植物缺水、土壤干旱时,蓄水槽内的雨水会自动对植物根部进行浇灌,使植物健康生长。
Intelligent three-dimensional rainwater recycling ecological landscape corridor and working process thereof
The invention discloses an intelligent three-dimensional rainwater recycling ecological landscape corridor. The corridor comprises multiple corridor columns, the top ends of the multiple corridor columns jointly support a corridor eave, the corridor eave is slidably connected with a first purline and a second purline through multiple symmetrically-arranged supporting sheet plates, the first purline and the second purline are rotationally connected through a connecting rod, and a planting groove is formed in the middle of the corridor eave. The invention further discloses a working process ofthe intelligent three-dimensional rainwater recycling ecological landscape corridor. The working process comprises the following steps that S1, rainfall is monitored; S2, the angles of the first purline and the second purline are adjusted; S3, rainwater is recycled and stored; and S4, plants are irrigated. According to the corridor and the method, the structure is novel, the rainfall can be monitored through monitoring devices so that the rainwater can be collected within a proper period of time, and the collected rainwater can be in a clean state; and in addition, when plants lack water and soil is dry, the rainwater in a water storage tank can automatically irrigate roots of the plants so that the plants can healthily grow.
本发明公开了一种智能立体雨水回用的生态景观廊道,包括多根廊柱,多根所述廊柱的顶端共同支撑有廊檐,所述廊檐通过多个对称设置的支撑片板滑动连接有第一檩条和第二檩条,且第一檩条与第二檩条之间通过连杆转动连接,所述廊檐的中部设置有种植槽;本发明还公开了一种智能立体雨水回用的生态景观廊道的工作流程,包括以下步骤:S1:降雨监测;S2:调整第一檩条与第二檩条角度;S3:回收并储存雨水;S4:灌溉植物。本发明结构新颖,通过监测装置可以对降雨量进行检测,从而在合适的时间内收集雨水,使收集到的雨水均为洁净状态,此外,在植物缺水、土壤干旱时,蓄水槽内的雨水会自动对植物根部进行浇灌,使植物健康生长。
Intelligent three-dimensional rainwater recycling ecological landscape corridor and working process thereof
一种智能立体雨水回用的生态景观廊道及其工作流程
FENG JIAMIN (author)
2020-09-08
Patent
Electronic Resource
Chinese
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