Monitoring equipment for detecting acid rain by software

文档序号:1735564 发布日期:2019-12-20 浏览:29次 中文

阅读说明:本技术 用软件进行检测酸雨的监控设备 (Monitoring equipment for detecting acid rain by software ) 是由 李莎 于 2018-06-13 设计创作,主要内容包括:本发明公开了用软件进行检测酸雨的监控设备,包括设置在支撑杆上方的工作箱,其特征在于,还包括工作箱为中空结构,工作箱前端面设有开口,工作箱前端面安装有翻转板,所述翻转板覆盖于工作箱前端面,工作时翻转板绕工作箱朝向地面进行翻转;工作箱内部还安装有检测皿和摄像头,工作箱上端面表面上安装有湿度传感器,当下雨时,湿度传感器检测到空气湿度后,向工作箱发出信号,推出装置启动将检测皿和摄像头推出,对雨水进行检测。翻转板翻转角度为90度,翻转后能够起到支撑作用,检测皿推出后,检测皿放置在翻转板上方,雨水进入到检测皿中,所述检测皿内设置有PH试纸,雨水洒落在检测皿内后,与PH试纸产生反应。(The invention discloses a monitoring device for detecting acid rain by software, which comprises a working box arranged above a support rod, and is characterized in that the monitoring device also comprises a hollow working box, wherein the front end surface of the working box is provided with an opening; the inside detection ware and the camera of still installing of work box, install humidity transducer on the work box up end surface, when raining, humidity transducer detects air humidity back, to the work box signals, and ejecting device starts to release detection ware and camera, detects the rainwater. The turnover plate has a turnover angle of 90 degrees, can play a supporting role after being turned, and after the detection dish is pushed out, the detection dish is placed above the turnover plate, rainwater enters the detection dish, the detection dish is internally provided with PH test paper, and the rainwater is sprinkled and dropped in the detection dish and then reacts with the PH test paper.)

1. The monitoring equipment for detecting acid rain by using software comprises a working box (2) arranged above a support rod (1), and is characterized in that the working box (2) is of a hollow structure, an opening is formed in the front end face of the working box (2), a turnover plate (3) is installed on the front end face of the working box (2), the turnover plate (3) covers the front end face of the working box (2), and the turnover plate (3) turns towards the ground around the working box (2) during working; work box (2) inside still installs and detects ware (4) and camera (5), installs humidity transducer on the surface of work box (2) up end, and when raining, humidity transducer detects air humidity back, to work box (2) signals, and ejecting device (7) start will detect ware (4) and camera (5) and release, detect the rainwater.

2. The monitoring device for detecting acid rain with software according to claim 1, wherein a PH test paper is arranged in the detection dish (4), and rain water is sprinkled in the detection dish (4) and reacts with the PH test paper.

3. The monitoring device for detecting acid rain by using software as claimed in claim 1, wherein the pushing-out device (7) comprises an expansion link (71), a fixed link (72) and a pneumatic cylinder (73), one end of the expansion link (71) is connected with the detection vessel (4), the other end of the expansion link is provided with a rod cavity of the pneumatic rod (73), one end of the fixed link (72) is connected with the camera (5), the other end of the fixed link is arranged on the expansion link (71), the pneumatic cylinder (73) has a rod box to move towards the front end face of the working box (2) after the humidity sensor detects the signal, and when the signal disappears, the rod box of the pneumatic cylinder (73) moves towards the rear end face of the working box (2).

4. The monitoring device for detecting acid rain by software according to claim 1, wherein the lens direction of the camera (5) faces the detection vessel (4), and after the PH test paper in the detection vessel (4) reacts, the camera (5) transmits the monitored image information to the monitoring center through the wireless transmission module (6).

5. The monitoring device for detecting acid rain with software according to claim 1, characterized in that the area of the bottom surface of the detection dish (4) is smaller than the area of the port.

Technical Field

The invention relates to monitoring equipment, in particular to monitoring equipment for detecting acid rain by using software.

Background

Acid rain is also known as acid precipitation, which refers to the precipitation of natural precipitation and acidic gases and particulates at pH values less than 5.6. With the increasing pollution of the atmospheric environment, acid rain has serious threat to the ecological balance of the earth and human health, and the environmental acidification problem caused by the acid rain has attracted extensive attention of human society. Generally, in order to obtain the condition of the ph of precipitation and the content of acidic substances in the atmosphere within one year, an environment monitoring person generally arranges an automatic ph-rain collector in an area needing real-time detection to collect a ph-rain sample so as to analyze ph data of the ph-rain. The existing automatic acid rain collector can only automatically collect acid rain samples generally, and the detection of acid rain and the analysis of related data still adopt the mode of manual detection and analysis, the acid rain samples are collected and analyzed by adopting the mode, environment monitoring personnel must personally take samples in the sample collection place, the workload of the environment monitoring personnel is increased invisibly, the operation process is relatively complex, and the related data information of acid rain can not be obtained rapidly in time.

Disclosure of Invention

The invention aims to solve the technical problem that the device can be arranged on various terrains and automatically detect the pH value of rainwater in rainy days, and aims to provide monitoring equipment for detecting the pH value of the rainwater by using software and solve the problem.

The invention is realized by the following technical scheme:

the monitoring equipment for detecting acid rain by using software comprises a working box arranged above a supporting rod, and is characterized by also comprising a hollow working box, wherein an opening is formed in the front end face of the working box; the inside detection ware and the camera of still installing of work box, install humidity transducer on the work box up end surface, when raining, humidity transducer detects air humidity back, to the work box signals, and ejecting device starts to release detection ware and camera, detects the rainwater. The turnover plate has a turnover angle of 90 degrees, can play a supporting role after being turned, and after the detection dish is pushed out, the detection dish is placed above the turnover plate, rainwater enters the detection dish, the detection dish is internally provided with PH test paper, and the rainwater is sprinkled and dropped in the detection dish and then reacts with the PH test paper. The pH test paper reacts, and the color begins to change; the camera lens direction is towards detecting the ware, detects the interior PH test paper of ware and produces the reaction after, and the image information that the camera will be monitored passes through wireless transmission module and transmits to the surveillance center. This allows the operator to detect acid rain off-site. And operating personnel can send signals to the pneumatic cylinder through the wireless transmission module, and the push-out device is remotely started for detection.

Ejecting device includes telescopic link, dead lever, pneumatic cylinder, and telescopic link one end is connected with the detection ware, and the other end is provided with the pole intracavity that has of pneumatic rod, and dead lever one end is connected with the camera, and the other end setting is on the telescopic link, and the pneumatic cylinder has the pole case to move to terminal surface direction before the work box after humidity transducer detects the signal, and after the signal disappears, the pneumatic cylinder has the pole case to move to work box rear end face direction. The telescopic operation is performed through the pneumatic cylinder, because the load is small, firstly, the noise is large by using high-power equipment such as the hydraulic cylinder, and then, waste is caused, the pneumatic cylinder is stable in structure, and the pneumatic cylinder can be stably used in a bearing range.

Further, the area of the bottom surface of the detection dish is smaller than that of the port. The volume of the detection dish is reduced, the weight of rainwater in the detection dish can be reduced, and the reduction of the load of the pneumatic cylinder is facilitated.

Compared with the prior art, the invention has the following advantages and beneficial effects:

1. the monitoring equipment for detecting acid rain by using software can be operated remotely, so that the labor is saved;

2. the monitoring equipment for detecting acid rain by using software has a simple structure, adopts fewer parts and is convenient to maintain;

3. the monitoring equipment for detecting acid rain by using software is provided with the supporting rods, so that the monitoring equipment can be arranged under a complex terrain.

Drawings

The accompanying drawings, which are included to provide a further understanding of the embodiments of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principles of the invention. In the drawings:

FIG. 1 is a schematic view of the present invention in a non-operating state.

Fig. 2 is a schematic view of the working state of the present invention.

Fig. 3 is a cross-sectional view of the present invention.

Reference numbers and corresponding part names in the drawings:

the device comprises a support rod 1, a working box 2, a turnover plate 3, a detection dish 4, a camera 5, a wireless transmission module 6, a push-out device 7, a telescopic rod 71, a fixing rod 72 and a pneumatic cylinder 73.

Detailed Description

In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to examples and accompanying drawings, and the exemplary embodiments and descriptions thereof are only used for explaining the present invention and are not meant to limit the present invention.

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