Continuous Thermal Overloading Capabilities of Ester Oil Transformers in Oil Directed Cooling Conditions

Jeyabalan Velandy, Ankita Garg, C. Narasimhan
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引用次数: 3

Abstract

The prediction of temperature distribution in ester oil (natural and synthetic ester oil) filled transformer due to different types of cooling modes are important for thermal designer in order to utilize the ester oil benefits of biodegradable, fire safety substations and continuous overloading capabilities with respect to mineral oil. It is still a technical challenge for ester oil to utilize in transformers since higher viscosity of ester oil will leads to reduce the heat transfer process mainly in convection. With the ester oil in a transformer, there will be reduction of convection fluid currents which leads to higher temperature in top temperature oil and winding temperature rise in ester oil filled transformers. In this paper, the effects of mineral oil and ester oil on top oil rise, winding rise and hot-spot temperature arising from their potentially different thermal properties are investigated using Thermal hydraulic network model (THNM) on 60/75/90MVA, 220/33kV transformer. The power losses are calculated from FEM based simulations and experimental data for thermal analysis using THNM model. The direct impact of oil flow rate and total pressure drop over the windings in oil directed (OD) cooling modes are analyzed under rated loading and 120% continuous overloading capabilities (108MVA) with respect to mineral oil.
油导向冷却条件下酯油变压器连续热过载性能研究
对于热设计人员来说,预测不同冷却方式下酯油(天然酯油和合成酯油)填充变压器的温度分布是非常重要的,以便利用酯油在生物可降解、防火安全变电站中的优势,以及相对于矿物油的连续过载能力。高粘度的酯油会导致以对流为主的换热过程减少,因此在变压器中应用酯油仍然是一个技术难题。变压器中加入酯油后,对流流体电流减小,导致顶温油温度升高,充酯油变压器绕组温度升高。在60/75/90MVA、220/33kV变压器上,采用热液网络模型(THNM)研究了矿物油和酯油对因其热性能不同而产生的顶油升、绕组升和热点温度的影响。基于有限元模拟和THNM模型热分析的实验数据计算了功率损耗。在额定负载和矿物油120%连续过载能力(108MVA)下,分析了油导向(OD)冷却模式下油流量和绕组上总压降的直接影响。
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