Establishing drainage water seal damage real-time detection device and using method thereof
A building drainage and real-time detection technology, which is applied to water supply devices, buildings, and indoor sanitary piping installations, etc., can solve problems such as failure and difficult water sealing, and achieve the effects of convenient operation, improved accuracy, and saving manpower and material resources
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specific Embodiment approach 1
[0023] Specific Embodiment 1: In this embodiment, the building drainage water seal damage real-time detection device, the building drainage system includes sanitary appliances, traps 5, drainage standpipes 6, drainage branch pipes, clearing equipment, lifting equipment, local sewage treatment structures and roof extensions Ventilation pipe 4, the sanitary appliance communicates with the drainage branch pipe through the water trap 5, and the drainage branch pipe communicates with the drainage vertical pipe 6, and the water in the drainage vertical pipe 6 is introduced into the local sewage treatment structure by the lifting equipment, and the drainage vertical pipe 6 The top of the roof is provided with a top-extending air pipe 4, and the peripheral surface of the drain standpipe 6 is provided with clearing equipment; the real-time detection device includes an intelligent pressure transient analysis management software system 1 and a pressure transient detection and identificatio...
specific Embodiment approach 2
[0025] Specific embodiment two: the difference between this embodiment and specific embodiment one is: the water hammer monitoring pressure sensor 3 is connected with the intelligent pressure transient analysis management software system 1 through the GPRS remote transmission communication function.
[0026] Other steps are the same as in the first embodiment.
specific Embodiment approach 3
[0027] Specific embodiment three: the method of using the real-time detection device for building drainage water seal damage in this embodiment is completed according to the following steps:
[0028] Step 1: Find the length of each pipe in the construction drawing of the drainage system of the building to be tested and the distance between each trap 5 and the drainage standpipe 6, and measure the pressure transient signal generator 2 and the water hammer monitoring pressure sensor 3 in the drainage distance on riser 6;
[0029] Step 2: Utilize the length of each pipeline in step 1, the distance between each trap 5 and the drainage riser 6, and the distance between the pressure transient signal generator 2 and the water hammer monitoring pressure sensor 3 on the drainage riser 6, and Combined with the construction drawing of the drainage system of the building to be tested, an equal-scale hydraulic model of the drainage system to be tested is constructed in the intelligent pres...
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