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Ahmed Gamil
HomeTeamAhmed Gamil
Hitachi Energy

Ahmed Gamil

Experience on Natural Ester Filled Transformer at Cold Climate Condition / Testovi starenja alternativnih izolacionih tečnosti

KRATAK SADRŽAJ: Experience on Natural Ester Filled Transformer at Cold Climate Condition

The selection of insulation liquids to be used in power transformers in cold climate region has focused on comparing the pour points and the minimum ambient temperature registered in the location of transformer installation. On that base if the customer specification indicates that the minimum temperature during transformer outage period would be below the pour point of a specified insulation liquid, this liquid is usually excluded from transformer commission. On the other hand, labs experience shows that the liquid could be frozen at a temperature, which is higher than the pour point, usually known as freezing point, and which increase the restrictions for liquid selection. On a real scale of a transformer, the challenge considers the dielectric and mechanical limits of the design. There are three phases the transformer goes through after installation: storage, energizing and loading. The experience shows that the most critical moment of energizing is during solid-liquid transition phase, in which release of bubbles is expected causing partial discharge leads to dielectric failure. Mechanically if the pressure release during de-freezing the liquid exceed the design limitation, mechanical damage is to be expected specially in the cooling system. This identifies that the time to start freezing is a function of cooling temperature and location presented in the ratio of liquid volume to the surface area exposed to ambient. If the storage time could be limited at a certain subzero temperature so that the liquid is not starting to freeze, the energization is safe to start, and no issue are expected. The current research presents testing of natural ester filled transformer for approval of the liquid at -15°C, while it has a pour point at -30°C. Analyzing of the thermal time constant of the liquid during storage and after energizing phase gives more space for the liquid application even under lower temperature and more time for outage periods. Moreover, the liquid temperature distribution profile shows a minimum temperature above zero degrees, which ensure the possibility of operating the transformer at no-load safely, even if the temperature goes down closer to pour point. This state-of-the-art experience proven that challenge of operating power transformer at extreme cold temperature can be handled if all influencing factor are considered and controlled as long as the liquid does not start solidification.

Ključne reči: Natural ester, cold climate, power transformer, liquid solidification, thermal time constant

KRATAK SADRŽAJ: Testovi starenja alternativnih izolacionih tečnosti

Korišćenje alternativnih tečnosti kao zamena za mineralna ulja počela je pre nekoliko decenija. Ipak, još uvek ne postoje jasne smernice i regulative kojima je moguće utvrditi ostarelost čvrste i tečne izolacije prilikom primene alternativnih tečnosti. Većina istraživanja se oslanja na smernice koje su utvrđene za mineralna ulja, što može dovesti do zabune ili greške. Utvrđivanje ostarelosti izolacionog sistema i kraja životnog veka transformatora punjenih mineralnim uljem zasniva se na velikoj količini informacija i iskustva koja su prikupljana otkad je započeto korišćenje ovakvih transformatora. Granice ključnih svojstava tečnosti i kriterijumi gasnohromatografske analize su dobro definisane za rekondicioniranje, regeneraciju i zamenu mineralnog ulja, kao i utvrđivanje ispravnosti transformatora. Određeni napori istraživačke zajednice su usmereni bili na korekciju ovih pravila kako da bi se primenili na transformatore sa alternativnim tečnostima, ali za sada bez značajnijih uspeha. U okviru ovog istraživanja, sprovedeni su uporedni testovi starenja u laboratorijskim uslovima dva prirodna estra iste osnove. Starenje je vršeno na temperaturi od 180 °C u ćelijama od nerđajućeg čelika sa dva tipa papira različite termičke izdržljivosti i četiri tipa metalnih komponenti u odnosima koji odgovaraju realnim transformatorima. Nakon definisanih intervala starenja, do 28 dana, vršena su ispitivanja ključnih svojstva izolacionih tečnosti, kao što su: sadržaj gasova rastvorenih u ulju, sadržaj kiselina, dielektrična čvrstoća, sadržaj vode, međupovršinski napon, viskoznost, sadržaj antioksidanata, kao i stepen polimerizacije apira i sadržaj vode u papiru. Rezultati testova su ukazali na značajne razlike u starenju i generisanju gasova ispitivanih tečnosti, u zavisnosti od vrste papira koji je korišćen tokom starenja, kao aditiva prisutnih u tečnostima. Osim toga, studija je pokazala I određenu povezanost svojstava tečnosti u različitim fazama degradacije papira.Rezultati su ukazali na važnost sprovođenja testova kompatibilnosti izolacionih tečnosti i različitih materijala pre njihove primene u transformatorima.

Ključne reči: Testovi starenja, Kompatibilnost, Životni vek, Prirodni estri, Energetski transformatori

Biografija predavača

Ahmed Gamil received his M.Sc. degree from RWTH Aachen, Germany in 2004 (High Voltage Technology). Ahmed worked previously at University of Erlangen (FAU, EES) as scientific research assistance for the development of differential protection systems before joining SGB-SMIT Group. In 2010 he joined SGB in Regensburg with the aim of building the R&D Department from a technology and management point of view. In the last years as head of R&D, he contributed by different publications to transformer design optimization and technology innovation. His journey at SGB ends in Oct. 2022 to start a new one at Hitachi Energy as „Business R&D Expert Professional“ from Nov. 2022. His focus is to improve testing procedure of insulation liquids for aging and compatibility and introduce an application guideline for power transformer under environmental stresses. He is an active member in IEC and CIGRE working groups and contributed as an author in the new CIGRE Green Book for „Transformers and Reactors Life Management“.