Throwing type recyclable emergency rescue monitoring and alarming device
By designing a throwable, recyclable emergency rescue monitoring and alarm device and adopting a detection tube and drone recovery structure, the problems of fixing and recovering the landslide displacement monitoring device during throwing were solved, achieving stable monitoring and efficient resource utilization.
Patent Information
- Application Number
- CN202422994772.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-12-05
AI Technical Summary
In existing landslide displacement monitoring devices, multiple cones easily interfere with each other when thrown, making them difficult to fix and unable to be recovered over long distances, affecting monitoring efficiency and resource utilization.
A throwable and recyclable emergency rescue monitoring and alarm device is designed. It adopts a detection tube structure, which includes a conical insertion section, an alarm, a locator and a drone recovery structure. The conical insertion section is stably inserted into the soil, and the alarm prompts that the displacement exceeds the limit. The detection tube is recovered by a drone, which can be reused multiple times.
It achieves stability and convenience in landslide displacement monitoring, can give timely alarms and recover devices, saves resources, and improves monitoring efficiency and equipment utilization.
Smart Images

Figure CN223320909U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field related to landslide displacement monitoring, in particular to a throwable and recyclable emergency rescue monitoring and alarm device. Background Art
[0002] Landslide monitoring, a discipline within the field of natural disaster prevention and control, involves observing and analyzing various landslide precursors and recording the process of landslide formation and activity. Key monitoring areas include: the development of various cracks in different parts of the slope; loosening of the rock mass, localized collapse, and subsidence and uplift; various underground and surface deformation and displacement phenomena; groundwater levels, water volume, and hydrochemical characteristics; tree leaning and building deformation; external environmental changes such as rainfall and seismic activity; and abnormal animal activity. These activities generate relevant data and information, providing a basis for landslide prediction and disaster prevention. Landslide monitoring utilizes landslide displacement monitoring devices.
[0003] Currently, landslide monitoring on the market requires the use of landslide displacement monitoring devices, especially displacement monitoring equipment. In actual use, displacement monitoring equipment mainly consists of a GNSS antenna, a power supply, a main control chassis (with a main control transmission module inside), and a mounting bracket. It includes two parts: a base station and a measuring station. The equipment can upload data to an environmental monitoring platform via a signal network and is suitable for surface displacement monitoring and building deformation monitoring. Most displacement monitoring equipment has multiple cones at the insertion end. When cast, the multiple cones interfere with each other, making it impossible to fix the displacement monitoring equipment and achieve long-distance recovery. Utility Model Content
[0004] The utility model aims to provide a throwable and recyclable emergency rescue monitoring and alarm device, which can send out an alarm to remind staff while measuring the specific situation of landslide displacement, and can also realize the long-distance recovery of the measuring device.
[0005] To this end, the technical solution adopted by the utility model is: a throw-type recyclable emergency rescue monitoring and alarm device, including a detection tube, an alarm and a locator are installed on the upper end of the detection tube, a battery compartment for installing a power supply is provided on the detection tube, the alarm and the locator are connected to the power supply below, the alarm and the GPS locator are both connected to the control terminal via radio signals, the detection tube includes a counterweight section at the bottom end and an insertion section arranged below the counterweight section, the insertion section is conical in shape, and a drone recovery structure is provided at the top of the detection tube, and the drone recovery structure includes at least one hook arranged at the top of the detection tube.
[0006] As a preferred embodiment of the above solution, the alarm is an audible and visual alarm, and the alarm is arranged below the locator.
[0007] More preferably, the power source is a dry cell battery or a rechargeable battery.
[0008] More preferably, the number of the hooks is four and they are evenly distributed around the circumference.
[0009] More preferably, the insertion section is made of hard metal, and the length of the insertion section is between 25 and 35 cm.
[0010] More preferably, the length of the counterweight section is between 15 and 25 cm.
[0011] Further preferably, the hook includes a horizontal section connected to the detection tube and a curved section provided at a free end of the horizontal section.
[0012] The beneficial effects of the present invention are as follows: when monitoring landslide displacement, the detection tube is thrown below the landslide and a conical insertion section is provided, which makes insertion more convenient, and the insertion section is partially inserted into the soil to ensure the stability of the detection tube, and the displacement distance of the locator connected to the control terminal is read. When the displacement of the locator exceeds the preset value, the alarm sounds an alarm to remind the staff that the landslide displacement exceeds the safety value. The specific displacement distance of the landslide can be directly determined, and corresponding control measures can be taken. It is more convenient to use and a hook is provided. After the landslide displacement measurement is completed, the detection tube can be recovered by a drone, and the power supply can be replaced regularly for multiple reuse, saving resources. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a structural diagram of the present utility model. DETAILED DESCRIPTION
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0015] like Figure 1 As shown, a throwable recyclable emergency rescue monitoring and alarm device includes a detection tube 1, an alarm 2 and a locator 3 are installed on the upper end of the detection tube 1, a battery compartment 4 for installing a power supply is provided on the detection tube 1, the alarm 2 and the locator 3 are connected to the power supply below, and the alarm 2 and the locator 3 are both connected to the control terminal by signal, the detection tube 1 includes a counterweight section 101 at the bottom end, and an insertion section 102 arranged below the counterweight section 101, the insertion section 102 is conical in shape, and a drone recovery structure is provided at the top of the detection tube 1, and the drone recovery structure includes at least one hook 5 arranged at the top of the detection tube 1.
[0016] The alarm 2 adopts an audible and visual alarm 2, and the alarm 2 is arranged below the locator 3. The audible and visual alarm 2 can be seen from a distance. The audible and visual alarm 2 is connected to the control terminal. When the audible and visual alarm 2 sounds an alarm, the control terminal also sends a prompt synchronously.
[0017] The power source adopts dry cell or rechargeable battery. The dry cell or rechargeable battery can be replaced or recharged after the detection tube 1 is recovered, and can be reused many times, thus saving resources.
[0018] There are four hooks 5 evenly spaced around the circumference. When the drone is recovered, it can be recovered by randomly hooking it to one of the hooks 5, which is more convenient.
[0019] The insertion section 102 is made of hard metal and has a length of 25 to 35 cm. The hard metal ensures the strength of the insertion section 102 when the detection tube 1 is thrown.
[0020] The length of the counterweight section 101 is between 15 and 25 cm. The 15 to 25 cm counterweight section 101 increases the mass of the lower end of the detection tube 1, ensuring that the insertion section 102 at the lower end falls and is inserted into the soil when cast.
[0021] The hook 5 consists of a horizontal section connected to the detection tube 1 and a curved section at the free end of the horizontal section. The hook 5 is set at the top of the detection tube 1, and a pull rope is set under the drone's tripod. The lower end of the pull rope is connected to a curved hook that matches the hook 5. When recovering, the curved hook is connected to the hook 5, and the drone is started to retrieve the detection tube 1.
[0022] When monitoring landslide displacement, the detection tube 1 is thrown below the landslide and a conical insertion section 102 is set, which makes insertion more convenient. Partial insertion of the insertion section 102 into the soil can ensure the stability of the detection tube 1, and read the displacement distance of the locator 3 connected to the control terminal. When the displacement of the locator 3 exceeds the preset value, the alarm 2 sounds an alarm to remind the staff that the landslide displacement exceeds the safety value. The specific displacement distance of the landslide can be directly determined, and corresponding control measures can be taken. It is more convenient to use. A hook 5 is set, and after the landslide displacement measurement is completed, the detection tube 1 can be recovered by a drone, and the power supply can be replaced regularly for multiple reuse, saving resources.
[0023] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A throwable and recyclable emergency rescue monitoring and alarm device, characterized by: The invention comprises a detection tube (1), wherein an alarm (2) and a locator (3) are installed at the upper end of the detection tube (1), a battery compartment (4) for installing a power supply is provided on the detection tube (1), the lower parts of the alarm (2) and the locator (3) are connected to the power supply, and the alarm (2) and the GPS locator (3) are both connected to a control terminal via radio signals. The detection tube (1) comprises a counterweight section (101) at the bottom end and an insertion section (102) arranged below the counterweight section (101), wherein the insertion section (102) is conical in shape. The top end of the detection tube (1) is provided with a drone recovery structure, and the drone recovery structure comprises at least one hook (5) arranged at the top end of the detection tube (1).
2. The throwable and recyclable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The alarm (2) is an audible and visual alarm (2), and the alarm (2) is arranged below the locator (3).
3. The throwable and recyclable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The power source is a dry cell or a rechargeable battery.
4. The throwable and recyclable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The number of the hooks (5) is four and they are evenly distributed around the circumference.
5. The throwable and recyclable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The insertion section (102) is made of hard metal, and the length of the insertion section (102) is between 25 and 35 cm.
6. The throwable and recyclable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The length of the counterweight section (101) is between 15 and 25 cm.
7. The throwable and retrievable emergency rescue monitoring and alarm device according to claim 1 is characterized in that: The hook (5) comprises a horizontal section connected to the detection tube (1) and a curved section arranged at the free end of the horizontal section.