STUDY OF ICE FORMATION PROCESSES ON OVERHEAD POWER LINES AND DEVELOPMENT OF SYSTEMS TO COMBAT THIS PHENOMENON

Oleg Gaidamak
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Abstract

Icing on the wires of overhead power lines is a big problem to maintain their integrity. The process of icing wires leads to a significant increase in their mass and, accordingly, to large overloads on the wire and electric supports. Exceeding the loads above the permissible ones can cause great damage to power lines. Wires, cables can break, fittings can be damaged and even lead to collapse of electrical poles. At the same time, damage is caused from the undersupply of electricity. This damage may exceed the damage from damage to the elements of power lines. Ice on the wires usually appear in winter, especially when the warming is going to be replaced by a cold snap and the temperature fluctuates around zero. The problem can be exacerbated by strong wind loads. An increase in air humidity also accelerates the formation of an ice "coat" on wires and electrical poles. Under the most unfavorable conditions, the wall thickness of the “fur coat” of ice on the wire can reach more than 70 mm. Such an ice coat can lead to exceeding the maximum permissible loads and damage to the power line, as well as damage from a power outage. The mechanism of ice formation on overhead power lines, as well as negative damage to power lines and high-voltage pylons under the action of ice load, has been studied. An analysis of the known methods of dealing with ice on power lines has been carried out. An innovative device for combating icing formations is proposed. The advantage of the proposed device is the ability to operate in two modes: vibrating and shock-shaking, which expands its functionality. In preventive mode, the device operates continuously due to the interaction with alternating current flowing through the wires of power lines in the normal mode of their operation, without the need for shutdown for maintenance, which gives the electromechanical interactions of devices with the wire of the power line a vibrational character and ensures the continuity of the process of removing water drops from the wires at an early stage before ice formation. Thus, in the preventive mode of operation of the power line, the causes of icing of the wires are eliminated, and not its consequences, which eliminates the need to shut down for maintenance, and reduces the required costs of resources and energy.
研究架空电力线上的结冰过程和开发对抗这一现象的系统
架空电力线的电线结冰是维护其完整性的一个大问题。电线结冰的过程会导致它们的质量显著增加,因此,电线和电气支架会出现很大的过载。超过允许的负荷会对电力线造成很大的损坏。电线、电缆可能断裂,配件可能损坏,甚至导致电线杆倒塌。与此同时,电力供应不足也造成了损害。这种损害可能超过电力线元件损坏造成的损害。电线上的冰通常出现在冬天,尤其是当变暖即将被寒流取代,温度在零度上下波动的时候。强风荷载会加剧这个问题。空气湿度的增加也加速了电线和电线杆上冰“外套”的形成。在最不利的条件下,电线上的冰“皮毛”的壁厚可达70毫米以上。这样的一层冰可以导致超过最大允许负载和损坏电源线,以及停电造成的损坏。研究了冰荷载作用下架空电力线结冰的机理以及对电力线和高压塔的负损伤。对处理电力线结冰的已知方法进行了分析。提出了一种新型的防结冰装置。所提出的设备的优点是能够在两种模式下工作:振动和冲击震动,这扩展了其功能。在预防模式下,设备在正常运行模式下,由于与流经电力线导线的交流电相互作用而连续运行,而无需停机维护,这使得设备与电力线导线的机电相互作用具有振动特性,并确保了在结冰前早期从导线中除去水滴过程的连续性。因此,在电力线的预防性运行方式中,消除的是电线结冰的原因,而不是其后果,从而消除了停机维护的需要,并降低了所需的资源和能源成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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