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首页> 外文期刊>Advances in civil engineering >Study of Electric Field Impact on Crystallization in Tunnel Drainage Pipes in Hard Water Area
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Study of Electric Field Impact on Crystallization in Tunnel Drainage Pipes in Hard Water Area

机译:硬水域隧道排水管结晶电场影响研究

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摘要

To solve the problem of blockage of crystallization in tunnel drainage pipes in hard water area, electric field devices are designed and applied in the transversal tunnel drainage pipe according to the fundamental law of crystallization. Laboratory tests were carried out to test the crystallizing tunnel drainage pipe under the effect of electric field in order to study the law of electric field impact on crystallization in tunnel drainage pipes in hard water area. The test results indicate that the arranged circumferential and parallel plate electric field devices can form an electrical field within a narrow and small space inside the pipe and influence the ion movement in water and adsorption performance between crystals and the pipe. Under the condition of full flow, the amount of crystals in the ordinary pipe without electric field treatment increases progressively along water flow direction and remains relatively uniform later. The amount of crystals along the water flow direction of the pipe treated with circumferential and parallel plate electric fields presents signs of fluctuation in the early stage and then stableness later. The amount of crystals in the fluctuating section is higher and lower in the uniform section, and its uniform section length is longer than that in ordinary pipes. Under the condition of full current, crystallizing speed declines with elapse of running time. After the electric field is imposed, crystallizing acceleration progressively decreased to a relatively lower level. Comparing three voltages of 5?V, 12?V, and 24?V, the effect of scale inhibition under 5?V is superior. When water amount in the pipe varies, the effects of scale inhibition under different electric field modes are different. The electric field effect causes the changes of the external form of calcium carbonate crystal and its surface abrasion, porous crystal, and structural looseness.
机译:为了解决硬水区域中隧道排水管中结晶堵塞问题,根据结晶的基本规律设计并施加电场装置并施加在横向隧道排水管中。进行实验室试验,以测试电场效果下的结晶隧道排水管,以研究硬防水区隧道排水管中结晶的电场冲击定律。测试结果表明,布置的周向和平行板电场装置可以在管道内的窄和小空间内形成电场,并影响水中的离子运动和晶体和管道之间的吸附性能。在完全流动的条件下,普通管中的晶体的量沿着水流动方向逐渐增加,后来保持相对均匀。沿着圆周和平行板电场处理的管道的水流动方向的晶体量呈现早期波动的迹象,然后稍后稳定。在均匀部分中,波动部分中的晶体的量更高,均匀,其均匀的截面长度长​​于普通管的长度长。在全电流的条件下,结晶速度随着运行时间的流逝而下降。在施加电场之后,结晶加速度逐渐降低到相对较低的水平。比较5?V,12?v和24 v的三个电压,测量抑制率为5°以下的效果优越。当管道中的水量变化时,在不同的电场模式下抑制的效果是不同的。电场效应导致碳酸钙晶体的外部形式及其表面磨损,多孔晶体和结构松动的变化。

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