Method for analyzing groundwater infiltration amount of sewage pipe network
A sewage pipe network and analysis method technology, applied in the direction of testing water, measuring devices, measuring flow/mass flow, etc., can solve the problems of large error, difficult construction, high detection cost, etc., achieve small error, low detection cost, and improve operation The effect of potency
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Embodiment 1
[0034] In this embodiment, by detecting the water quality and flow rate of two transfer wells, the analysis results of the actual measurement and calculation of the groundwater in the sewage pipe section to be monitored are obtained. After comparison, the error of the groundwater infiltration volume analyzed by the invention is small, and the application It is reliable in practical engineering.
[0035] Nodes J1 and J2 are two transfer wells on the sewage pipe section to be monitored (that is, no domestic sewage flows into the pipe section), and the flow and water quality of J1 and J2 are monitored synchronously:
[0036] Actual seepage amount Q: The actual seepage amount of groundwater in this pipe section is taken as the difference between the monitored flow rates of the two transfer wells:
[0037] Q real=Q2—Q1 (2)
[0038] Where: Q1 is the monitoring flow of J1, and Q2 is the monitoring flow of J2.
[0039] Calculate the amount of leakage Q meter: take amg / L as the avera...
Embodiment 2
[0044] The positions of nodes N1, N2, N3, N4, N5 and pipe sections C1, C2, C3, C4, C5 in the sewage pipe network are as attached figure 2 As shown, the flow water quality monitoring results of each node are shown in Table 1 below.
[0045] Table 1
[0046]
[0047] From the nighttime flow monitoring results, it can be seen that there is groundwater infiltration in pipe sections 1, 2, and 3, and there is no groundwater infiltration in pipe sections 4 and 5. From the characteristic ion concentration detected at each node, it can be seen that the groundwater infiltration of pipe sections 1, 2, and 3 are 150.36m 3 / d, 55.34m 3 / d, 5491.02m 3 / d.
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