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Influence of alternating electric field on crystallization of tunnel drainage pipes-based on indoor orthogonal test

机译:交变电场对隧道排水管结晶的影响——基于室内正交试验

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摘要

The blocking of tunnel drainage pipe caused by crystals from groundwater calcification is prone to bring about lining cracking and water leakage. In this paper, in order to prevent tunnel drainage pipes from the crystallization, this study proposed a method to prevent the binding of Yin and Yang ions based on the alternating electric field. For the purpose of concluding the crystallization rules of drainage pipes and verifying the feasibility of this method, an indoor orthogonal test was adopted to study the crystallization rules and anti-crystallization efficiency of three drainage pipes under three alternating electric fields at three voltages (6 V, 9 V, 12 V) and at three flows (34.7 ml/s, 76.9 ml/s and 192.0 ml/s). The results showed that: During the test, all the three voltages can reduce the crystallization of drainage pipes, and the anti-crystallization efficiency of all the three tested pipes was optimal at 6 V under each of three alternating electric fields, reaching 22, 25, 7, respectively. Case 2 had the best anti-crystallization effect at 6 V. The reason is that, at 6 V, the crystals had the loosest and minimum grains and the largest interplanar spacing, so they were inclined to be discharged through the pipe under the water flow. At 34.7 ml/s, Case 2 had the best anti-crystallization effect at 12 V; At 76.9 ml/s and 192.0 ml/s, Case 2 had the best anti-crystallization effect at 6 V. The alternating electric field can prevent the tunnel drainage pipe from crystallization and blocking, and different drainage pipes in the alternating electric fields should be selected based on according to the groundwater in tunnel.
机译:地下水钙化结晶对隧道排水管的堵塞,容易造成衬砌开裂和漏水。为了防止隧道排水管结晶,本研究提出了一种基于交变电场的防止阴阳离子结合的方法。为总结排水管的结晶规律,验证该方法的可行性,采用室内正交试验,研究了3根排水管在3个交变电场、3个电压(6 V、9 V、12 V)和3个流量(34.7 ml/s, 76.9 毫升/秒和 192.0 毫升/秒)。结果表明:试验过程中,3种电压均能降低排水管的结晶,且3种被试管在6 V时均达到最佳抗结晶效率,在3种交变电场下均达到22%、25%、7%。案例2在6 V时抗结晶效果最好。原因是,在6 V时,晶体具有最松散和最小的晶粒以及最大的面间距,因此它们倾向于在水流下通过管道排出。在34.7 ml/s时,案例2在12 V下具有最佳的抗结晶效果;在76.9 ml/s和192.0 ml/s时,案例2在6 V下具有最佳的抗结晶效果。交变电场可以防止隧道排水管结晶堵塞,应根据隧道内地下水情况选择交变电场中的不同排水管。

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