Heat supply pipeline heat data acquisition device
By installing sensors and protective sleeves at the welded joints of heating pipes, the problem of difficult detection of leaks in heating pipes has been solved, enabling real-time acquisition of heat data and timely alarms for leaks, thus improving the management efficiency of the heating system.
Patent Information
- Application Number
- CN202520573364.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-29
AI Technical Summary
Heating pipes are prone to leaks after prolonged use, and these leaks are difficult to detect, affecting heating efficiency and making it impossible to collect heat data in real time.
Sensors and protective sleeves are installed at the welded joints of the inlet and outlet pipes of the heating pipeline. The sensors collect heat data, and the protective sleeves and alarm boxes provide timely alarms in case of leaks.
It enables real-time acquisition of heat data within heating pipelines and provides timely alarms when leaks occur, thereby improving the reliability and management efficiency of the heating system.
Smart Images

Figure CN223855437U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a heat pipeline heat data acquisition device. BACKGROUND
[0002] At present, the heat pipeline is through the main inlet pipe installed in the stair, and then each user is connected with the main inlet pipe through the branch pipe and the main inlet pipe welding as the main pipeline of the heat pipeline in the house, but the leakage often occurs due to the welding opening not firm after long time use, and the leakage is often difficult to find due to not in the user house, which influences normal heating, and the heat data of the heat pipeline cannot be collected in real time. UTILITY MODEL CONTENT
[0003] The utility model discloses a heat pipeline heat data acquisition device.
[0004] In order to achieve the above object, the utility model provides the following technical scheme:
[0005] A heat pipeline heat data acquisition device, which comprises an inlet pipe, an outlet pipe and a water passing pipe, wherein the inlet pipe is welded to the water passing pipe, the outlet pipe is welded to the water passing pipe, a plurality of sensors are installed on the water passing pipe, a protective sleeve is fixed at the welding position of the inlet pipe and the water passing pipe and the welding position of the outlet pipe and the water passing pipe respectively, the bottom of each protective sleeve is communicated with a water collecting pipe head, and an alarm box is sleeved on the two water collecting pipe heads.
[0006] The heat pipeline heat data acquisition device, wherein the alarm box is provided with an alarm and a power supply, the positive electrode of the power supply is connected to the positive electrode of the alarm through a wire, the positive electrode of the alarm is divided into two positive electrode wire branches, and each positive electrode wire branch is inserted into the corresponding water collecting pipe head.
[0007] The negative electrode of the power supply is divided into two negative electrode wire branches, and each negative electrode wire branch is inserted into the corresponding water collecting pipe head.
[0008] The heat pipeline heat data acquisition device, wherein the bottom of each water collecting pipe head is threadedly connected with a threaded cap. ADVANTAGEOUS EFFECTS
[0009] 1. The utility model discloses a flow sensor, a pressure sensor and a temperature sensor are installed at the water passing pipe, so that the flow, pressure and temperature of hot water in the heat pipeline can be collected, and the heat data can be collected.
[0010] 2. The utility model discloses a protective sleeve is fixed respectively at the welding of inlet pipe and water pipe and the welding of outlet pipe and water pipe, the bottom of each protective sleeve is communicated with the water collecting pipe head, the alarm box is covered on two water collecting pipe heads, when leaking, the leakage will enter the protective sleeve and enter the water collecting pipe in the bottom of protective sleeve, and the alarm is realized through the alarm, and timely remind that the leakage has occurred. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is the perspective view of the utility model;
[0012] Figure 2 It is the front view of the utility model;
[0013] Figure 3 It is the bottom view of the utility model;
[0014] Figure 4 It is Figure 3 A-A section view of the utility model;
[0015] Figure 5 It is Figure 4 B part enlarged view of the utility model;
[0016] Figure 6 It is the section view of the utility model;
[0017] Figure 7 It is Figure 6 C part enlarged view of the utility model;
[0018] In the drawing: 1, inlet pipe; 2, flow sensor; 3, pressure sensor; 4, temperature sensor; 5, protective sleeve; 6, outlet pipe; 7, alarm box; 8, water pipe; 9, water collecting pipe head; 10, alarm; 11, power supply; 12, positive line branch; 13, negative line branch; 14, threaded cap; 15, opening; 16, half ring cover; 17, rib; 18, fixed bolt. DETAILED DESCRIPTION
[0019] Referring to Figures 1-7 , a heat supply pipeline heat data acquisition device, its composition includes: inlet pipe 1, outlet pipe 6 and water pipe 8, the inlet pipe with the water pipe welding, the outlet pipe with the water pipe welding, a plurality of sensors are installed on the water pipe, and the sensor is three, is flow sensor 2, pressure sensor 3 and temperature sensor 4 respectively, can gather the flow, pressure and temperature of hot water in heat supply pipeline respectively, the welding of inlet pipe with the water pipe and the welding of outlet pipe with the water pipe are fixed with protective sleeve 5 respectively, the bottom of each protective sleeve is communicated with water collecting pipe head 9, alarm box 7 is covered on two water collecting pipe heads.
[0020] The protective sleeve is composed of two semicircular sleeves 16, and the two sleeves are buckled together. Each sleeve has a rib 17 at both ends, and the sleeves are fixed by bolts 18 after buckling.
[0021] The alarm box is provided with an alarm 10 and a power supply 11, the positive pole of the power supply is connected to the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches 12, and each positive pole wire branch is inserted into the corresponding water collecting pipe head;
[0022] The negative pole of the power supply is divided into two negative pole wire branches 13, and each negative pole wire branch is inserted into the corresponding water collecting pipe head, and the insertion ports of the positive pole wire branches and the negative pole wire branches in the water collecting pipe heads are coated with sealing glue, so that the sealing is realized and the leakage of water through the insertion ports is prevented.
[0023] The protective sleeve is composed of two semicircular sleeves 16, and the two sleeves are buckled together. Each sleeve has a rib 17 at both ends, and the sleeves are fixed by bolts 18 after buckling. The alarm box is provided with an alarm 10 and a power supply 11, the positive pole of the power supply is connected to the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches 12, and each positive pole wire branch is inserted into the corresponding water collecting pipe head; The negative pole of the power supply is divided into two negative pole wire branches 13, and each negative pole wire branch is inserted into the corresponding water collecting pipe head, and the insertion ports of the positive pole wire branches and the negative pole wire branches in the water collecting pipe heads are coated with sealing glue, so that the sealing is realized and the leakage of water through the insertion ports is prevented. The protective sleeve is composed of two semicircular sleeves 16, and the two sleeves are buckled together. Each sleeve has a rib 17 at both ends, and the sleeves are fixed by bolts 18 after buckling. The alarm box is provided with an alarm 10 and a power supply 11, the positive pole of the power supply is connected to the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches 12, and each positive pole wire branch is inserted into the corresponding water collecting pipe head; The negative pole of the power supply is divided into two negative pole wire branches 13, and each negative pole wire branch is inserted into the corresponding water collecting pipe head, and the insertion ports of the positive pole wire branches and the negative pole wire branches in the water collecting pipe heads are coated with sealing glue, so that the sealing is realized and the leakage of water through the insertion ports is prevented. The protective sleeve is composed of two semicircular sleeves 16, and the two sleeves are buckled together. Each sleeve has a rib 17 at both ends, and the sleeves are fixed by bolts 18 after buckling. The alarm box is provided with an alarm 10 and a power supply 11, the positive pole of the power supply is connected to the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches 12, and each positive pole wire branch is inserted into the corresponding water collecting pipe head; The negative pole of the power supply is divided into two negative pole wire branches 13, and each negative pole wire branch is inserted into the corresponding water collecting pipe head, and the insertion ports of the positive pole wire branches and the negative pole wire branches in the water collecting pipe heads are coated with sealing glue, so that the sealing is realized and the leakage of water through the insertion ports is prevented. The protective sleeve is composed of two semicircular sleeves 16, and the two sleeves are buckled together. Each sleeve has a rib 17 at both ends, and the sleeves are fixed by bolts 18 after buckling. The alarm box is provided with an alarm 10 and a power supply 11, the positive pole of the power supply is connected to the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches 12, and each positive pole wire branch is inserted into the corresponding water collecting pipe head; The negative pole of the power supply is divided into two negative pole wire branches 13, and each negative pole wire branch is inserted into the corresponding water collecting pipe head, and the insertion ports of the positive pole wire branches and the negative pole wire branches in the water collecting pipe heads are coated with sealing glue, so that the sealing is realized and the leakage of water through the insertion ports is prevented.
Claims
1. A heat pipe heat data acquisition device, consisting of: The utility model provides an inlet pipe, an outlet pipe and a water pipe, the inlet pipe is welded with the water pipe, the outlet pipe is welded with the water pipe, characterized by: a plurality of sensors are installed on the water pipe, the welding place of the inlet pipe and the water pipe and the welding place of the outlet pipe and the water pipe are fixed with protective sheaths respectively, the bottom of each protective sheath is communicated with a water collecting pipe head, and an alarm box is sleeved on two water collecting pipe heads.
2. The heat pipe heat data collection device according to claim 1, characterized in that: An alarm and a power supply are installed in the alarm box, the positive pole of the power supply is connected with the positive pole of the alarm through a wire, the positive pole of the alarm is divided into two positive pole wire branches, and each positive pole wire branch is inserted into the corresponding water collecting pipe head; The negative pole of the power supply is divided into two negative pole wire branches, and each negative pole wire branch is inserted into the corresponding water collecting pipe head.
3. The heat pipe heat data collection device according to claim 2, characterized in that: The bottom of each water collecting pipe head is threadedly connected with a threaded cover.