Nadimuthu Lalith Pankaj Raj, Moorthy Nisha Sathiya, Victor Kirubakaran, Thenkaraimuthu Mariprasad, Khan Baseem, Ali Ahmed
Centre for Rural Energy, The Gandhigram Rural Institute-Deemed to Be University, Gandhigram, Tamil Nadu, 624 302, India.
Department of Electrical and Electronics Engineering, K. S. R. M. College of Engineering (Autonomous), Kadapa, Andhra Pradesh, 516003, India.
Sci Rep. 2024 Aug 23;14(1):19653. doi: 10.1038/s41598-024-70195-y.
The transformer mineral oil is generally hydrocarbon-based and is not environmentally friendly, so it holds a significant share in environmental pollution. As an alternative to conventional transformer oil, plant-based insulation oil has been investigated globally in the past few decades. Even though vegetable oils are considered an environmentally viable alternative to mineral oil, the extensive utilization of vegetable oils could create a threat to Indian food security. The present work focuses on using Pongamia Pinnata oil (PPO) as a significant alternative to conventional transformer oil (CTO) in distribution transformers. The effectiveness of the proposed PPO is experimentally verified using thermal studies and electrical studies through a low-level distribution transformer of 1 kVA. A comparative analysis was carried out between the proposed and conventional oil regarding physical, chemical, and thermal properties. Also, scanning electron microscopy (SEM) and Energy Dispersive X-ray spectroscopy analysis have been carried out for fibreglass cloth insulation material with PPO and CTO to ensure the intrinsic structural strength of the insulation material. The structural strength ensures the bonding and life span of the insulation in the transformer. The cost-benefit analysis is also favourable for the proposed oil as a better green liquid dielectric for transformers.
变压器矿物油一般以碳氢化合物为基础,不环保,因此在环境污染中占很大比例。作为传统变压器油的替代品,植物基绝缘油在过去几十年里在全球范围内得到了研究。尽管植物油被认为是矿物油在环境方面可行的替代品,但植物油的广泛使用可能会对印度的粮食安全构成威胁。目前的工作重点是使用水黄皮油(PPO)作为配电变压器中传统变压器油(CTO)的重要替代品。通过一台1 kVA的低电平配电变压器,利用热学研究和电学研究对所提出的PPO的有效性进行了实验验证。对所提出的油和传统油的物理、化学和热性能进行了比较分析。此外,还对使用PPO和CTO的玻璃纤维布绝缘材料进行了扫描电子显微镜(SEM)和能量色散X射线光谱分析,以确保绝缘材料的固有结构强度。结构强度确保了变压器中绝缘材料的粘结和使用寿命。成本效益分析也表明,所提出的油作为一种更好的变压器绿色液体电介质是有利的。