填充BN纳米颗粒的高导热变压器油

B. Du, X. Li
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引用次数: 0

摘要

液体绝缘在电力系统的设计和运行中起着重要的作用。文献中有充分的证据表明,在常规变压器油中添加纳米颗粒可以显著提高电特性和热特性。本文将具有高导热系数的球形BN纳米颗粒加入到变压器油中形成纳米流体,以提高其电学和热学性能。测定了改性前后油样的电学性能和热特性。结果表明,纳米流体具有较高的交流击穿电压和相对介电常数,较低的耗散系数,电性能优于纯油。为了研究氮化硼纳米颗粒对热性能的影响,利用红外热像仪和温度传感器测量了不同浓度氮化硼纳米流体在导热过程中的温度变化和热分布。结果表明,在相同的实验条件下,BN颗粒浓度越高,纳米流体的散热速度越快。结果表明,BN填料的加入对变压器油基流体的电学和热学性能有显著的影响。
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High thermal conductivity transformer oil filled with BN nanoparticles
Liquid insulation plays a significant role in the design and operation of power system. There is good evidence in the literature that the addition of nanoparticles to conventional transformer oils can lead to significant increases both in electrical and thermal characteristics. In this paper, spherical BN nanoparticles with high thermal conductivity were added into transformer oil to form nanofluids, with the aim of enhancing electrical and thermal properties. Electrical properties and thermal characteristics of oil samples before and after modification were measured. It was found that the nanofluids have higher AC breakdown voltage and relative permittivity, lower dissipation factor which indicates better electrical properties compared with pure oil. In order to investigate the effect of BN nanoparticles on thermal properties, temperature changes and heat distribution of the nanofluids with different concentrations of BN particles in thermal conductivity process were measured by an infrared thermal imager and a temperature sensor. Obtained results showed that, under the same experimental condition, the heat dissipation of nanofluids with higher concentration of BN particles was faster. It is concluded that the added BN fillers have a very significant effect on electrical and thermal properties in transformer oil-based fluids.
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