Construction supporting device close to existing canal system building
By configuring construction support devices with support monitoring instruments and water level monitoring instruments, the coordinated operation of the support structure and the dewatering structure is realized, which solves the problem of support deformation caused by excessively fast dewatering rate during construction and improves construction efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA HYDROPOWER ELEVENTH ENG BUREAU (ZHENGZHOU) CO LTD
- Filing Date
- 2025-06-21
- Publication Date
- 2026-04-21
AI Technical Summary
During construction near existing canal structures, the rapid rate of dewatering during support construction and dewatering construction leads to excessively rapid loss of soil pressure within the support structure, causing deformation of the support structure and even quicksand. Existing technologies have failed to effectively coordinate these operations.
Design a construction support device, including a support structure and a dewatering structure, equipped with support monitoring instruments and water level monitoring instruments, realize the coordinated operation of the support structure and the dewatering structure through intelligent control and early warning equipment, and use wireless and wired terminals for remote scheduling and parameter adjustment to prevent deformation of the support structure.
It enables coordinated operation of the support structure and the dewatering structure, prevents deformation, improves construction efficiency and quality, enhances remote dispatch efficiency, and ensures construction safety.
Smart Images

Figure CN224148733U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of water conservancy construction technology, specifically relating to construction support devices for adjacent existing canal structures. Background Technology
[0002] In recent years, the demand for construction near existing canal structures will continue to increase. Researching the construction support and dewatering technologies for existing canal structures will help standardize industry practices and improve the overall competitiveness of the industry.
[0003] In the existing technology, during the construction of support and dewatering of existing canal structures, the support and dewatering parts are usually independent of each other. This means that if the dewatering rate is too fast during the support and dewatering construction, the soil pressure inside the support will be lost too quickly. Due to the pressure difference, the surrounding soil will squeeze the support and cause deformation of the support, and may even generate quicksand. Utility Model Content
[0004] The purpose of this utility model is to provide a construction support device for adjacent existing canal structures in order to solve the above-mentioned problems, as detailed below.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] The present invention provides a construction support device for adjacent existing canal structures, including a support structure and a dewatering structure. The support structure is equipped with a support monitoring instrument for detecting displacement, stress and deformation. The dewatering structure is equipped with a water level monitoring instrument for monitoring water level changes and a pumping device for pumping water out to lower the water level.
[0007] Both the support monitoring instrument and the water level monitoring instrument are connected to the intelligent control and early warning device. The intelligent control and early warning device is connected to a wireless handheld dispatch terminal and a wired landline dispatch terminal via remote communication equipment, so as to remotely realize the coordinated operation and monitoring and dispatch of the support structure and the precipitation structure with the help of the wireless handheld dispatch terminal and the wired landline dispatch terminal.
[0008] Preferably, the support structure and the dewatering structure are equipped with UAV aerial surveying equipment to conduct high-precision surveying of existing canal system structures.
[0009] Preferably, the UAV aerial surveying and mapping equipment is also equipped with a building information modeling (BIM) simulation module, which is used to combine BIM technology to perform three-dimensional visualization simulation of the support structure and the precipitation structure.
[0010] Preferably, the support structure is one or a combination of sheet piles, diaphragm walls, or soil nailing walls.
[0011] Preferably, the precipitation structure is a deep well precipitation structure or a vacuum precipitation structure.
[0012] Preferably, the water level monitoring instrument is electrically connected to the pumping equipment to form a feedback control, which is used to monitor the changes in groundwater level in real time with the help of the water level monitoring instrument and adjust the operating parameters of the pumping equipment according to the monitoring results.
[0013] Preferably, the support monitoring instrument includes a displacement monitoring module, a stress monitoring module, and a deformation monitoring module, which are used to detect displacement, stress, and deformation respectively.
[0014] Preferably, the support monitoring instrument is electrically connected to the pumping equipment through the intelligent control and early warning device to form a feedback control, which is used to monitor the state changes of the support structure in real time and adjust the operating parameters of the pumping equipment according to the monitoring results.
[0015] Preferably, the remote communication device is equipped with a wireless communication module and an optical fiber communication module, and the intelligent control and early warning device is wirelessly connected to the wireless handheld dispatch terminal through the wireless communication module, and wiredly connected to the wired landline dispatch terminal through the optical fiber communication module.
[0016] Preferably, the remote communication module is further provided with an identity verification module for verifying the identity and permissions of the wireless handheld dispatch terminal and the wired landline dispatch terminal during the dispatching process.
[0017] The aforementioned construction support device for adjacent existing canal structures, specifically in the construction support design for adjacent existing canal structures, is equipped with support monitoring instruments and water level monitoring instruments for both the support structure and the dewatering structure. Both instruments are connected to the intelligent control and early warning device. The support monitoring instruments can detect the displacement, stress, and deformation of the support structure and feed this information back to the intelligent control and early warning device. Similarly, the water level monitoring instruments can detect changes in the water level of the dewatering structure and feed this information back to the intelligent control and early warning device. This facilitates timely sending of early warning information to construction and management personnel, ensuring construction safety. Furthermore, the feedback control system formed by the water level monitoring instrument and the pumping equipment allows for real-time monitoring of groundwater level changes and adjustment of the pumping equipment based on the monitoring results. The system monitors the operating parameters of the support structure and, through feedback control comprised of the support monitoring instrument, the intelligent control and early warning device, and the pumping equipment, enables real-time monitoring of changes in the support structure's condition and adjustments to the pumping equipment's operating parameters based on the monitoring results. This allows for coordinated operation of the support structure and the dewatering structure, preventing deformation of the support structure due to excessively rapid drainage. This improves construction efficiency and quality. Furthermore, the intelligent control and early warning device is connected to both a wireless handheld dispatch terminal and a wired landline dispatch terminal via a remote communication module. These terminals allow for remote viewing and dispatching of monitoring and early warning data and operating parameters, enhancing efficiency and facilitating remote monitoring and dispatching of the support structure and dewatering structure's operational status.
[0018] The beneficial effects are as follows: 1. The support structure and the dewatering structure of this utility model are respectively equipped with support monitoring instruments and water level monitoring instruments. At the same time, both support monitoring instruments and water level monitoring instruments are connected to intelligent control and early warning equipment. Then, with the help of the support monitoring instruments, the displacement, stress and deformation of the support structure can be detected and fed back to the intelligent control and early warning equipment. With the help of the water level monitoring instruments, the water level changes of the dewatering structure can be detected and fed back to the intelligent control and early warning equipment, which facilitates the timely sending of early warning information to construction personnel and management personnel, and ensures construction safety.
[0019] 2. Through feedback control consisting of water level monitoring instruments and pumping equipment, the changes in groundwater level can be monitored in real time by the water level monitoring instruments, and the operating parameters of the pumping equipment can be adjusted according to the monitoring results. At the same time, through feedback control consisting of support monitoring instruments, intelligent regulation and early warning equipment and pumping equipment, the state changes of the support structure can be monitored in real time by the support monitoring instruments, and the operating parameters of the pumping equipment can be adjusted according to the monitoring results. This enables the coordinated operation of the support structure and the dewatering structure, preventing the support structure from deforming due to the excessive drainage speed of the dewatering structure, which is conducive to improving construction efficiency and quality.
[0020] 3. The intelligent control and early warning equipment is connected to both a wireless handheld dispatch terminal and a wired landline dispatch terminal via a remote communication module. With the help of these terminals, the monitoring and early warning data and working parameters can be remotely viewed and dispatched, improving the efficiency of viewing and dispatching and facilitating remote monitoring and dispatching of the working status of the support structure and precipitation structure. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is an overall system block diagram of this utility model;
[0023] Figure 2 This is a utility model Figure 1 A partial schematic diagram.
[0024] The annotations in the attached figures are explained as follows:
[0025] 1. UAV aerial surveying and mapping equipment; 2. Support structure; 3. Support monitoring instrument; 301. Displacement monitoring module; 302. Stress monitoring module; 303. Deformation monitoring module; 4. Intelligent control and early warning equipment; 5. Remote communication module; 501. Wireless communication module; 502. Identity verification module; 503. Fiber optic communication module; 6. Wireless handheld dispatch terminal; 7. Building information modeling simulation module; 8. Dewatering structure; 9. Pumping equipment; 10. Water level monitoring instrument; 11. Wired landline dispatch terminal. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0027] See Figures 1-2 As shown, this utility model provides a construction support device for adjacent existing canal structures, including a support structure 2 and a dewatering structure 8. The support structure 2 is equipped with a support monitoring instrument 3 for detecting displacement, stress, and deformation. The dewatering structure 8 is equipped with a water level monitoring instrument 10 for monitoring water level changes and a pumping device 9 for pumping water out to lower the water level. The purpose of this arrangement is that the support monitoring instrument 3 can detect the displacement, stress, and deformation of the support structure 2 and feed them back to the intelligent control and early warning device 4. The water level monitoring instrument 10 can detect the water level changes of the dewatering structure 8 and feed them back to the intelligent control and early warning device 4, so as to send early warning information to construction personnel and management personnel in a timely manner.
[0028] See Figures 1-2 As shown, both the support monitoring instrument 3 and the water level monitoring instrument 10 are connected to the intelligent control and early warning device 4. The intelligent control and early warning device 4 is connected to a wireless handheld dispatch terminal 6 and a wired landline dispatch terminal 11 via remote communication devices. This allows for remote monitoring and dispatching of the support structure 2 and the precipitation structure 8. The purpose of this setup is to enable remote monitoring and dispatching of monitoring and early warning data and working parameters via the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11, thereby improving the efficiency of monitoring and dispatching and facilitating remote monitoring and dispatching of the working status of the support structure 2 and the precipitation structure 8.
[0029] See Figure 1 As shown, the following optimizations were made to this scheme. Specifically, the support structure 2 and the dewatering structure 8 are both equipped with UAV aerial surveying equipment 1 to facilitate high-precision surveying of existing canal system structures. Optionally, the UAV aerial surveying equipment 1 is also equipped with a Building Information Modeling (BIM) simulation module 7 to perform three-dimensional visualization simulation of the support structure 2 and the dewatering structure 8 using BIM technology. Further optionally, the support structure 2 can be one or a combination of sheet piles, diaphragm walls, or soil nailing walls, and the dewatering structure 8 can be a deep well dewatering structure 8 or a vacuum dewatering structure 8. This configuration allows for multiple different options for the support structure 2 and the dewatering structure 8, facilitating flexible selection based on actual site conditions.
[0030] See Figures 1-2 As shown, the water level monitoring instrument 10 is electrically connected to the pumping equipment 9 to form a feedback control system, enabling real-time monitoring of groundwater level changes and adjustment of the pumping equipment 9's operating parameters based on the monitoring results. Optionally, the support monitoring instrument 3 includes a displacement monitoring module 301, a stress monitoring module 302, and a deformation monitoring module 303, allowing for the detection of displacement, stress, and deformation of the support structure 2 using these modules respectively. Further optionally, the support monitoring instrument 3 is electrically connected to the pumping equipment 9 via an intelligent control and early warning device 4 to form a feedback control system, enabling real-time monitoring of the support structure 2's state changes and adjustment of the pumping equipment 9's operating parameters based on the monitoring results.
[0031] See Figures 1-2 As shown, the remote communication device is equipped with a wireless communication module 501 and an optical fiber communication module 503. The intelligent control and early warning device 4 is wirelessly connected to the wireless handheld dispatch terminal 6 via the wireless communication module 501, and wiredly connected to the wired landline dispatch terminal 11 via the optical fiber communication module 503. This configuration facilitates communication between the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11 and the intelligent control and early warning device 4 using the wireless communication module 501 and the optical fiber communication module 503, respectively. Optionally, the remote communication module 502 is also equipped with an identity verification module 502 for verifying the identity and permissions of the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11 during the dispatching process. This configuration allows the identity verification module 502 to verify the identity and permissions of the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11 during the dispatching process, preventing unintentional or intentional dispatching and ensuring the secure operation of the dispatching function.
[0032] Using the above structure, specifically in the construction support design for adjacent existing canal structures, the support structure 2 and the dewatering structure 8 are respectively equipped with support monitoring instruments 3 and water level monitoring instruments 10. Both instruments are connected to the intelligent control and early warning device 4. The support monitoring instrument 3 can detect the displacement, stress, and deformation of the support structure 2 and feed this information back to the intelligent control and early warning device 4. Similarly, the water level monitoring instrument 10 can detect changes in the water level of the dewatering structure 8 and feed this information back to the intelligent control and early warning device 4. This facilitates timely sending of early warning information to construction and management personnel, ensuring construction safety. Furthermore, the feedback control system formed by the water level monitoring instrument 10 and the pumping equipment 9 allows for real-time monitoring of groundwater level changes, and the operation parameters of the pumping equipment 9 can be adjusted based on the monitoring results. Simultaneously, through the feedback control consisting of the support monitoring instrument 3, the intelligent control and early warning device 4, and the pumping equipment 9, the support monitoring instrument 3 can monitor the state changes of the support structure 2 in real time and adjust the operating parameters of the pumping equipment 9 according to the monitoring results. This enables the coordinated operation of the support structure 2 and the dewatering structure 8, preventing deformation of the support structure 2 due to excessive drainage speed of the dewatering structure 8, which is beneficial to improving construction efficiency and quality. Furthermore, since the intelligent control and early warning device 4 is connected to the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11 through the remote communication module 5, the monitoring and early warning data and working parameters can be remotely viewed and dispatched through the wireless handheld dispatch terminal 6 and the wired landline dispatch terminal 11, improving the viewing and dispatching efficiency and facilitating remote viewing and dispatching of the working status of the support structure 2 and the dewatering structure 8.
[0033] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A construction support device for a construction work in the vicinity of an existing pipeline structure, comprising a support structure and a dewatering structure, characterized in that: The support structure is equipped with support monitoring instruments for displacement, stress and deformation detection, and the dewatering structure is equipped with water level monitoring instruments for monitoring water level changes and pumping equipment for pumping water out to lower the water level. Both the support monitoring instrument and the water level monitoring instrument are connected to the intelligent control and early warning device. The intelligent control and early warning device is connected to a wireless handheld dispatch terminal and a wired landline dispatch terminal via remote communication equipment, so as to remotely realize the coordinated operation and monitoring and dispatch of the support structure and the precipitation structure with the help of the wireless handheld dispatch terminal and the wired landline dispatch terminal.
2. The construction support device for a structure adjacent to an existing pipeline according to Claim 1, wherein: The support structure and the dewatering structure are equipped with UAV aerial surveying equipment to conduct high-precision surveying of existing canal system structures.
3. The construction support device for a structure adjacent to an existing pipeline according to Claim 2, wherein: The drone aerial surveying and mapping equipment is also equipped with a building information modeling (BIM) simulation module, which is used to perform three-dimensional visualization simulation of the support structure and the precipitation structure in combination with BIM technology.
4. The construction support device for constructing a building in the vicinity of an existing pipeline according to Claim 1, wherein: The support structure is one or a combination of sheet piles, diaphragm walls, or soil nailing walls.
5. The construction support device for a structure adjacent to an existing pipeline according to Claim 4, wherein: The precipitation structure is either a deep well precipitation structure or a vacuum precipitation structure.
6. The construction support device for structures adjacent existing pipeline systems of claim 1, wherein: The water level monitoring instrument is electrically connected to the pumping equipment to form a feedback control, which is used to monitor changes in groundwater level in real time with the help of the water level monitoring instrument and adjust the operating parameters of the pumping equipment according to the monitoring results.
7. The construction support device for constructing a building adjacent to an existing pipeline according to Claim 1, wherein: The support monitoring instrument includes a displacement monitoring module, a stress monitoring module, and a deformation monitoring module, which are used to detect displacement, stress, and deformation respectively.
8. The construction support device for a structure adjacent to an existing pipeline according to claim 6 or 7, characterized in that: The support monitoring instrument is electrically connected to the pumping equipment through the intelligent control and early warning device to form a feedback control, which is used to monitor the state changes of the support structure in real time and adjust the operating parameters of the pumping equipment according to the monitoring results.
9. The construction support device for constructing a building adjacent to an existing pipeline according to Claim 1, wherein: The remote communication device is equipped with a wireless communication module and an optical fiber communication module. The intelligent control and early warning device is wirelessly connected to the wireless handheld dispatch terminal through the wireless communication module, and wiredly connected to the wired landline dispatch terminal through the optical fiber communication module.
10. The construction support device for structures adjacent to existing pipeline systems according to claim 9, wherein: The remote communication device is also equipped with an identity verification module for verifying the identity and permissions of the wireless handheld dispatch terminal and the wired landline dispatch terminal during the dispatching process.