Tests, checks and diagnostics of ship medium voltage transformers

I. Kalinin, О. Savchenko, М.Yu. Khmel
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Abstract

Object and purpose of research. The study deals with the diagnostic Issues of ship MV transformers from factory acceptance tests to harbor trials. The purpose is to analyse the requirements and advanced diagnostic tools for status monitoring of ship power transformers, as well as to overview the Issues of electrodynamic withstand checks on transformers. Materials and methods. Stages (operations) are considered that ship power transformers undergo from the stage of factory acceptance tests to harbor trials. Requirements of ship transformers are analyzed. Foreign and Russian tools to check and measure power transformer parameters in industry as well as requirements for electrodynamic withstand testing are compared. Main results. It is shown that in view of high operational risks associated with accidents and failures of onboard transformers it is not enough to check transformer characteristics after transportation or storage (prior to onboard installation) for ensuring their high reliability. Functional analysis of foreign and Russian diagnostic instruments is presented, and vectors for improvement of the Russian tools are defined for the interest of shipbuilding industry. It is shown that the electric withstand tests are particularly important when new designs and technologies are used where reliable verification is impossible neither through calculations nor through modeling, while large safety margins are economically not viable. Conclusion. If some power units in the electric propulsion system (EPS) fail, extra costs would be spent on docking the vessel, dismounting of good equipment and hull structures to remove out-of-order equipment. Regulatory documenttation does not specify the scope of EPS components’ checkup after transportation or storage. Technical measures to ensure reliability of EPS elements include diagnostics of EPS elements prior to their installation on board the ship and during commissioning trials. Diagnostic tools of foreign make have more functional capabilities as compared to Russian instruments. Choice of specific devices and decisions to go for extra costs to further develop the Russian instruments should be based on feasibility studies. New regulations are required for testing rectifier transformers for electrodynamic withstand at short-circuit fault, as well as development and modernization of regional inter-industry shock test facilities.
船舶中压变压器的测试、检查和诊断
研究对象和目的。本文研究了船舶中压变压器从出厂验收到港口试验的诊断问题。目的是分析船舶电力变压器状态监测的要求和先进的诊断工具,并概述变压器的电动耐压检查问题。材料和方法。船舶电力变压器从出厂验收阶段到港口试验阶段被认为是运行阶段。分析了船舶变压器的要求。比较了国外和俄罗斯在工业上对电力变压器参数的检测和测量工具,以及对电动力耐压试验的要求。主要的结果。结果表明,由于车载变压器事故和故障的高运行风险,仅在运输或储存后(在车载安装之前)检查变压器的特性不足以保证其高可靠性。介绍了国外和俄罗斯诊断仪器的功能分析,并从造船工业的利益出发,确定了俄罗斯诊断仪器的改进方向。结果表明,当采用新设计和新技术时,既不可能通过计算也不可能通过建模进行可靠的验证,而大的安全边际在经济上是不可行的,则耐电测试尤为重要。结论。如果电力推进系统(EPS)中的一些动力单元出现故障,则需要花费额外的费用来对接船舶,拆卸良好的设备和船体结构以拆除故障设备。规范性文件未规定EPS组件运输或储存后的检查范围。确保EPS元件可靠性的技术措施包括在EPS元件安装上船之前和调试试验期间对其进行诊断。与俄罗斯仪器相比,国外制造的诊断工具具有更多的功能。具体装置的选择和为进一步发展俄罗斯仪器而支付额外费用的决定应以可行性研究为基础。对整流变压器进行短路故障时的耐电冲击测试,以及区域跨行业冲击测试设备的开发和现代化,都需要制定新的规定。
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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