{"id":1200,"date":"2026-07-22T05:33:00","date_gmt":"2026-07-22T05:33:00","guid":{"rendered":"https:\/\/lstransformer.com\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/"},"modified":"2026-09-26T13:46:59","modified_gmt":"2026-09-26T13:46:59","slug":"how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes","status":"publish","type":"post","link":"https:\/\/www.lstransformer.com\/de\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/","title":{"rendered":"How to Restore Dampened Insulation in Transformers in Humid Environments? \u2014In-Depth Comparison Between Hot Oil Circulation and Vacuum Drying Processes"},"content":{"rendered":"<h1 style=\"text-align: left;\">How to Restore Dampened Insulation in Transformers in Humid Environments?<b><\/b><\/h1>\n<h4>\u2014In-Depth Comparison Between Hot Oil Circulation and Vacuum Drying Processes<b><\/b><\/h4>\n<p>Humid environments are a major enemy of transformer insulation systems. When moisture penetrates insulating paperboard and insulating oil, it significantly reduces their electrical strength and mechanical performance, leading to partial discharge or even insulation breakdown accidents. If you observe a drop in insulation resistance or an increase in the dielectric loss factor (Tan\u03b4), efficient and reliable drying treatment becomes critical to restoring safe operation. This article provides a detailed comparison of two mainstream drying techniques\u2014hot oil circulation and vacuum drying\u2014explaining their principles, characteristics, and applicable scenarios to help you make an informed decision.<\/p>\n<h2><b><span style=\"font-family: Arial;\">Inhalt<\/span><\/b><b><\/b><\/h2>\n<h3><em>1. Accurate Diagnosis: Confirming the Degree of Insulation Dampness is the First Step<\/em><b><\/b><\/h3>\n<p>Before performing any drying process, accurately diagnosing the condition and extent of insulation dampness is crucial, as it determines the choice of drying method and parameter settings.<\/p>\n<h4 style=\"padding-left: 40px;\"><strong>1.1 Key Diagnostic Parameters and Standards:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Insulation Resistance (IR) and Polarization Index (PI):<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">Measuring the insulation resistance between windings and windings-to-ground is the most basic and quickest detection method (typically using a 2500V or 5000V megohmmeter). According to the IEEE 43 standard, the Polarization Index (PI = R10min \/ R1min) is more effective in eliminating temperature effects and assessing the actual insulation condition. A PI value below 2.0 is generally considered a clear warning sign of dampened or degraded insulation.<\/p>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Dielectric Loss Factor (Tan\u03b4) and Capacitance:<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">Measured using a Schering bridge or modern automatic Tan\u03b4 testers. Moisture significantly increases the Tan\u03b4 value of cellulose insulation (values above 0.5% indicate possible dampness, while values above 1% suggest severe dampness). Monitoring capacitance changes helps assess moisture uniformity or localized defects.<\/p>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Moisture Content in Oil:<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">Determined precisely using the Karl Fischer coulometric method per IEC 60422 or ASTM D1533 (ppm level). While oil moisture does not fully represent solid insulation moisture, the two maintain a dynamic balance. Excessive moisture in oil (e.g., &gt;25 ppm) is a key indicator of overall insulation dampness.<\/p>\n<h6 style=\"padding-left: 80px;\"><strong>(4) Oil Breakdown Voltage (BDV):<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">Pure, dry oil has a very high breakdown voltage (&gt;60 kV). Moisture and impurities significantly reduce BDV (&lt;30 kV typically indicates dampness or contamination). Testing follows IEC 60156 or ASTM D1816.<\/p>\n<table width=\"782\" cellspacing=\"0\">\n<tbody>\n<tr>\n<td valign=\"top\" width=\"212\"><b>Test Parameter<\/b><\/td>\n<td valign=\"top\" width=\"108\"><b>Testing Standard<\/b><\/td>\n<td valign=\"top\" width=\"233\"><b>Reference Threshold (Warning)<\/b><\/td>\n<td valign=\"top\" width=\"230\"><b>Primary Issue Indicated<\/b><\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"212\">Insulation Resistance (IR)\/Polarization Index (PI)<\/td>\n<td valign=\"top\" width=\"108\">IEEE 43<\/td>\n<td valign=\"top\" width=\"233\">PI &lt; 2.0<\/td>\n<td valign=\"top\" width=\"230\">Overall insulation dampness or degradation<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"212\">Dielectric Loss Factor (Tan\u03b4)<\/td>\n<td valign=\"top\" width=\"108\">IEC 60247<\/td>\n<td valign=\"top\" width=\"233\">&gt; 0.5% (possible dampness), &gt;1% (severe dampness)<\/td>\n<td valign=\"top\" width=\"230\">Increased insulation loss (moisture, aging byproducts)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"212\">Moisture Content in Oil<\/td>\n<td valign=\"top\" width=\"108\">IEC 60422, ASTM D1533<\/td>\n<td valign=\"top\" width=\"233\">&gt; 20-30 ppm (typical warning threshold)<\/td>\n<td valign=\"top\" width=\"230\">Oil dampness, indirectly reflecting solid insulation risk<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"212\">Oil Breakdown Voltage (BDV)<\/td>\n<td valign=\"top\" width=\"108\">IEC 60156, ASTM D1816<\/td>\n<td valign=\"top\" width=\"233\">&lt; 30 kV<\/td>\n<td valign=\"top\" width=\"230\">Reduced oil insulation strength due to moisture\/impurities<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<div class=\"table-note\" style=\"text-align: center;\"><em>Table 1:\u00a0Key Diagnostic Parameters and Reference Thresholds for Transformer Insulation<\/em><\/div>\n<h4 style=\"padding-left: 40px;\"><strong>1.2 Diagnostic Guidance:<\/strong><\/h4>\n<p style=\"padding-left: 40px;\">Based on these parameters, you can determine whether dampness is superficial or deeply penetrated. Mild dampness (e.g., only oil moisture exceeds limits, PI close to 2) may be suitable for hot oil circulation. Moderate to severe dampness (PI significantly &lt;2, Tan\u03b4 sharply elevated) strongly recommends vacuum drying.<\/p>\n<p><a title=\"Transformer, Wholesale Transformatoren Versorgt und Hersteller,Spezialisiert in Transformatoren f\u00fcr 50 Jahre\" href=\"https:\/\/www.lstransformer.com\/de\/Transformers\/\" target=\"_blank\" rel=\"noopener\"><img fetchpriority=\"high\" decoding=\"async\" class=\"aligncenter\" title=\"17\" src=\"https:\/\/manage.lstransformer.com\/upload\/news\/1763443153822885.png\" alt=\"17\" width=\"400\" height=\"384\" border=\"0\" vspace=\"0\" \/><\/a><\/p>\n<h3><em>2. Hot Oil Circulation Drying: Principles and In-Depth Analysis<\/em><b><\/b><\/h3>\n<h4 style=\"padding-left: 40px;\"><strong>2.1\u00a0 Principle:<\/strong><\/h4>\n<p style=\"padding-left: 40px;\">Uses heated (65-85\u00b0C), dry, low-moisture insulating oil (typically from an oil processing unit) circulated continuously inside the transformer tank. The hot, dry oil contacts dampened solid insulation (paperboard, paper cylinders, winding wire insulation), transferring heat via conduction and convection. This heats the internal moisture, providing energy for migration. Due to the significant moisture gradient between the dry oil and damp insulation, water molecules spontaneously diffuse from high-concentration areas (inside the insulation) to low-concentration areas (circulating oil). The moisture is carried away by the oil to an external vacuum oil purifier (heated, vacuumed, and filtered) before being pumped back into the transformer.<\/p>\n<h4 style=\"padding-left: 40px;\"><strong>2.2 Advantages:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Simple operation, readily available equipment:\u00a0Primarily relies on standard vacuum oil purifiers (with heating) and circulation pipelines, making it easy to implement on-site.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2)Lower operational risk:\u00a0The process typically stays below the transformer\u2019s rated oil temperature (&lt;85\u00b0C), minimizing thermal stress on critical components like electromagnetic windings and reducing insulation aging risks.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Cost-effective:No need for large vacuum tanks or complex equipment, making labor and rental costs significantly lower than vacuum drying.<\/strong><\/h6>\n<h4 style=\"padding-left: 40px;\"><strong>2.3 Limitations:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Drying efficiency bottleneck:Moisture removal speed is limited by diffusion rates within solid insulation. Oil flow mainly affects surface layers, making deep drying slow or incomplete, especially for thick insulation or tightly packed winding areas.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Long processing time:\u00a0Achieving ideal results (especially deep drying) may take days or even weeks of continuous circulation, requiring extended power outages.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Dependence on oil quality and processing capacity:The dryness of circulating oil and the purifier\u2019s efficiency directly impact results. Degraded oil or inefficient processing can hinder effectiveness.<\/strong><\/h6>\n<h4 style=\"padding-left: 40px;\"><strong>2.4 Best Applications:\u00a0<\/strong><\/h4>\n<p style=\"padding-left: 40px;\">Mild dampness (e.g., elevated oil moisture but solid insulation remains stable), preventive maintenance, supplementary drying after vacuum drying, or minor drying during routine oil maintenance for large transformers.<\/p>\n<p><a href=\"https:\/\/www.lstransformer.com\/de\/Transformers\/\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" class=\"aligncenter size-full wp-image-3228\" src=\"https:\/\/lstransformer.com\/wp-content\/uploads\/2026\/07\/17634431776771571.png\" alt=\"\" width=\"472\" height=\"453\" srcset=\"https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/17634431776771571.png 472w, https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/17634431776771571-300x288.png 300w\" sizes=\"(max-width: 472px) 100vw, 472px\" \/><\/a><\/p>\n<h3><em>3. Vacuum Drying Process: Principles and In-Depth Analysis<\/em><b><\/b><\/h3>\n<h4 style=\"padding-left: 40px;\"><strong>3.1 Principle:A phased physical process centered on boiling point reduction and enhanced diffusion:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Preheating phase:\u00a0<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">Uses hot oil circulation or low-voltage current in windings (rarely hot air) to heat the transformer core (windings and insulation) uniformly to 90-110\u00b0C. This provides vaporization energy for moisture without significant removal. Uniform heating prevents localized overheating.<\/p>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Vacuum dehydration phase (core):<\/strong><\/h6>\n<p style=\"padding-left: 80px;\">While maintaining temperature, a high vacuum (&lt;100 Pa, ideally &lt;10 Pa) is applied inside the transformer tank. This drastically lowers water\u2019s boiling point.<\/p>\n<p style=\"padding-left: 80px;\">Scientific basis for boiling point reduction:<br \/>\nThe saturated vapor pressure (P) and temperature (T) relationship is approximated as:<\/p>\n<p style=\"text-align: center;\"><strong>ln(P) \u2248 A &#8211; B\/T<\/strong><\/p>\n<p style=\"padding-left: 80px;\">(where A, B are material constants).<br \/>\nUnder vacuum, reduced environmental pressure (P_env) lowers the boiling temperature (T_boil) where P_sat = P_env.<\/p>\n<p style=\"padding-left: 80px;\">Examples:<\/p>\n<h6 style=\"padding-left: 120px;\"><strong>(1) At atmospheric pressure (101.3 kPa), water boils at 100\u00b0C.<\/strong><br \/>\n<strong>(2) At 1 kPa absolute pressure, boiling point \u22487\u00b0C.<\/strong><br \/>\n<strong>(3) At 0.1 kPa (100 Pa), boiling point \u2248-20\u00b0C.<\/strong><\/h6>\n<p style=\"padding-left: 40px;\">Thus, at 90\u00b0C core temperature and 100 Pa vacuum, liquid water in insulation pores violently vaporizes. Crucially, moisture migration shifts from slow liquid diffusion to rapid vapor diffusion and permeation flow.<\/p>\n<p style=\"padding-left: 40px;\">The strong pressure gradient (ultra-low vacuum vs. near-atmospheric pressure inside insulation) drives vapor from deep within the insulation to the tank space. Vacuum pumps continuously remove vapor, maintaining low vapor pressure for sustained drying. This phase removes most moisture far faster than hot oil circulation.<\/p>\n<h4 style=\"padding-left: 40px;\"><strong>3.2\u00a0 Advantages:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Deep and thorough drying:\u00a0Efficiently removes moisture from thick or deep insulation, achieving moisture levels as low as 0.5% (factory standard), restoring &gt;90% of electrical and mechanical strength.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Faster drying time:\u00a0Under ideal parameters (temperature, vacuum), deep drying typically completes in days to a week\u2014much faster than hot oil circulation for severe dampness.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Quantifiable results:\u00a0Moisture removal is tracked via condenser output, vacuum stability, and endpoint criteria (e.g., no condensation for hours with stable vacuum).<\/strong><\/h6>\n<h4 style=\"padding-left: 40px;\"><strong>3.3 Limitations:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) High equipment and technical demands:Requires large vacuum pumps (rotary vane + roots), precision vacuum sensors, condensers, high-power heaters, and airtight seals. Operators need expertise.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Higher costs:Equipment rental\/purchase and labor expenses are greater.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Strict process control:Uneven heating risks insulation damage; insufficient vacuum or leaks hinder efficiency; poor sealing allows moisture re-entry. Rigorous monitoring is essential.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(4) Safety risks:\u00a0High temperature and vacuum challenge tank structural integrity and sealing.<\/strong><\/h6>\n<p>&nbsp;<\/p>\n<table width=\"693\" cellspacing=\"0\">\n<tbody>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Feature<\/b><\/td>\n<td valign=\"top\" width=\"231\"><b>Hot Oil Circulation Drying<\/b><\/td>\n<td valign=\"top\" width=\"318\"><b>Vacuum Drying<\/b><\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Core Driver<\/b><\/td>\n<td valign=\"top\" width=\"231\">Moisture gradient diffusion (solid-oil)<\/td>\n<td valign=\"top\" width=\"318\">Boiling point reduction + pressure-driven vapor diffusion\/permeation<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Primary Target<\/b><\/td>\n<td valign=\"top\" width=\"231\">Surface\/superficial layers<\/td>\n<td valign=\"top\" width=\"318\">Deep\/core insulation<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Temperature Range<\/b><\/td>\n<td valign=\"top\" width=\"231\">65-85\u00b0C (oil)<\/td>\n<td valign=\"top\" width=\"318\">90-110\u00b0C (core)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Key Environment<\/b><\/td>\n<td valign=\"top\" width=\"231\">Atmospheric pressure<\/td>\n<td valign=\"top\" width=\"318\">High vacuum (&lt;100 Pa, optimal &lt;10 Pa)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Drying Speed<\/b><\/td>\n<td valign=\"top\" width=\"231\">Slow (diffusion-limited), days to weeks<\/td>\n<td valign=\"top\" width=\"318\">Fast (vapor-driven), days to a week<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Drying Depth<\/b><\/td>\n<td valign=\"top\" width=\"231\">Limited, poor for deep\/severe dampness<\/td>\n<td valign=\"top\" width=\"318\">Extremely deep, factory-level dryness<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Equipment Complexity<\/b><\/td>\n<td valign=\"top\" width=\"231\">Low (standard purifier + pipes)<\/td>\n<td valign=\"top\" width=\"318\">High (vacuum pumps, heaters, condensers, monitors)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Technical Skill<\/b><\/td>\n<td valign=\"top\" width=\"231\">Moderate<\/td>\n<td valign=\"top\" width=\"318\">High (requires expertise)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Cost<\/b><\/td>\n<td valign=\"top\" width=\"231\">Lower<\/td>\n<td valign=\"top\" width=\"318\">Higher<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Main Risks<\/b><\/td>\n<td valign=\"top\" width=\"231\">Low overheating risk, but may under-dry deep layers<\/td>\n<td valign=\"top\" width=\"318\">Local overheating, tank deformation, seal failure (strict control needed)<\/td>\n<\/tr>\n<tr>\n<td valign=\"top\" width=\"145\"><b>Best For<\/b><\/td>\n<td valign=\"top\" width=\"231\">Mild dampness, preventive care, post-vacuum supplement<\/td>\n<td valign=\"top\" width=\"318\">Moderate-severe dampness, new transformers, post-overhaul deep drying<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<div class=\"table-note\" style=\"text-align: center;\"><em>Table 2:\u00a0Core Comparison Between Hot Oil Circulation and Vacuum Drying<\/em><\/div>\n<div><\/div>\n<p><a href=\"https:\/\/www.lstransformer.com\/de\/Transformers\/\" target=\"_blank\" rel=\"noopener\"><b> <img decoding=\"async\" class=\"aligncenter size-full wp-image-3229\" src=\"https:\/\/lstransformer.com\/wp-content\/uploads\/2026\/07\/17634432036652221.png\" alt=\"\" width=\"472\" height=\"453\" srcset=\"https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/17634432036652221.png 472w, https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/17634432036652221-300x288.png 300w\" sizes=\"(max-width: 472px) 100vw, 472px\" \/><\/b><\/a><\/p>\n<h3><em>4. How to Choose the Right Drying Method?<\/em><b><\/b><\/h3>\n<p>The decision hinges on accurately diagnosing dampness\u00a0severity and assessing on-site conditions:<\/p>\n<h4 style=\"padding-left: 40px;\"><strong>4.1 Prioritize vacuum drying for:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Confirmed moderate-severe dampness:\u00a0PI &lt;&lt; 2.0,\u00a0Tan\u03b4 &gt;&gt; 1%, high oil moisture with solid insulation degradation.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Critical or large power transformers:\u00a0Where maximum\u00a0insulation recovery and long-term reliability are non-negotiable.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Planned overhauls or new installations:\u00a0Standard\u00a0procedure to restore like-new insulation.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(4) Severe water ingress or prolonged high-humidity exposure:Deep moisture penetration.<\/strong><\/h6>\n<h4 style=\"padding-left: 40px;\"><strong>4.2 Consider hot oil circulation for:<\/strong><\/h4>\n<h6 style=\"padding-left: 80px;\"><strong>(1) Mild dampness with flexible downtime:\u00a0Only oil parameters are off, PI \u2248 2.0, slight Tan\u03b4 rise, and ample time for slow drying.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(2) Post-vacuum supplement:\u00a0After vacuum drying, hot oil circulation balances oil-paper moisture and removes residual traces.<\/strong><\/h6>\n<h6 style=\"padding-left: 80px;\"><strong>(3) Resource or site constraints:\u00a0Lack of vacuum equipment or unsuitable conditions.<\/strong><\/h6>\n<p style=\"text-align: left; padding-left: 40px;\">Key reminder: Professional supervision, strict parameter control, and proper endpoint judgment are critical. Incorrect settings, vacuum leaks, or premature termination can cause failure or damage. Always engage qualified, experienced service providers.<img class=\"anchorclass\" \/><\/p>\n<h2><b><span style=\"font-family: Arial;\">(2)\u5de5\u5b66\u7684\u306a\u7bc4\u56f2:(0.3~0.5)X_L@f\u1d63<\/span><\/b><\/h2>\n<p>Humidity\u2019s threat to transformer insulation cannot be ignored. Choosing between hot oil circulation and vacuum drying depends on dampness depth and severity. Hot oil circulation, with its simplicity and lower risk, suits mild dampness or preventive care. For moderate-severe cases or factory-standard recovery, vacuum drying is the gold standard\u2014its physics-based efficiency (boiling point reduction, pressure-driven diffusion) ensures long-term reliability.<\/p>\n<p>When facing insulation dampness, conduct comprehensive tests (IR\/PI, Tan\u03b4, oil moisture, etc.), use data to assess severity, and consult professional engineers. Align the method with your transformer\u2019s condition, site constraints, and budget to safeguard your power assets.<\/p>\n<h2 style=\"font-weight: bold;\"><strong>Kontakt<\/strong><\/h2>\n<p>\u96fb\u529b\u306e\u7b97\u51fa: <a href=\"https:\/\/www.lstransformer.com\/de\/\">single-phase transformer, three-phase-isolation in Transformatoren, elektrischen Transformator, Verteilung Transformator, step-down und step-up-Transformator, low-Spannung Transformator, hohe Spannung Transformator, Steuerung, Transformator, Ringkern Transformator, R-core-Transformator; DC-Spulen, AC Reaktoren, Filter-Reaktor -, line-und load reactor, drosseln, Filter-Reaktor, und die Mittel, hoch-Frequenz-Produkte<\/a>.<\/p>\n<p>\u304cV_peak\u7a4d\u306e\u904e\u96fb\u5727\u306e\u30d4\u30fc\u30af\u3068t_res\u306b\u5171\u9cf4\u3002 30%\u30de\u30fc\u30b8\u30f3\u63a8\u5968\u3092\u5360\u3081\u308b\u30b7\u30b9\u30c6\u30e0\u30d1\u30e9\u30e1\u30fc\u30bf\u5316\u3057\u307e\u3059\u3002<\/p>\n<p>2.2.3\u306e\u52d5\u7684\u5fdc\u7b54\u30bd\u30ea\u30e5\u30fc\u30b7\u30e7\u30f3 <a href=\"https:\/\/www.lstransformer.com\/de\/\">\u73fe\u4ee3\u306e\u30b7\u30b9\u30c6\u30e0\u5229\u7528\u30b5\u30a4\u30ea\u30b9\u30bf\u5236\u5fa1\u306b\u3088\u308b\u62b5\u6297\u6e1b\u8870(TCRD)\u3092\u691c\u77e5\u3059\u308b\u5171\u9cf4\u518510ms\u3001\u914d\u306e\u6b63\u78ba\u6027\u3001\u5207\u65ad\u4e2d\u306e\u901a\u5e38\u306e\u64cd\u4f5c\u306f\u907f\u3051\u307e\u3059\u3002<\/a>.<\/p>\n<p>3. \u9023\u643a\u6a5f\u69cb\u306e\u30a2\u30af\u30c6\u30a3\u30d6\u30d5\u30a3\u30eb\u30bf<br \/>\nWhatsApp\uff1a+86 13787095096<br \/>\nE-Mail: marketing@hnlsdz.com<\/p>","protected":false},"excerpt":{"rendered":"<p>How to Restore Dampened Insulation in Transformers in Humid Environments? \u2014In-Depth Comparison Between Hot Oil Circulation and Vacuum Drying Processes Humid environments are a major enemy of transformer insulation systems. When moisture penetrates insulating paperboard and insulating oil, it significantly reduces their electrical strength and mechanical performance, leading to partial discharge or even insulation breakdown [&hellip;]<\/p>\n","protected":false},"author":3,"featured_media":3230,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"default","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","ast-disable-related-posts":"","theme-transparent-header-meta":"default","adv-header-id-meta":"","stick-header-meta":"","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"set","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"var(--ast-global-color-5)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""},"tablet":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""},"mobile":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""}},"ast-content-background-meta":{"desktop":{"background-color":"var(--ast-global-color-4)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""},"tablet":{"background-color":"var(--ast-global-color-4)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""},"mobile":{"background-color":"var(--ast-global-color-4)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-opacity":"","overlay-gradient":""}},"footnotes":""},"categories":[48],"tags":[],"class_list":["post-1200","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-faq"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.1 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>How to Restore Dampened Insulation in Transformers in Humid Environments? \u2014In-Depth Comparison Between Hot Oil Circulation and Vacuum Drying Processes - LS power transformer, Line reactor, High-voltage transformer, Oil-immersed transformer-CHANGSHA LUSHAN ELECTRONIC TECHNOLOGY CO.,LTD<\/title>\n<meta name=\"description\" content=\"Humid environments are a major enemy of transformer insulation systems. When moisture penetrates insulating paperboard and insulating oil, it significantly reduces their electrical strength and mechanical performance, leading to partial discharge or even insulation breakdown accidents. If you observe a drop in insulation resistance or an increase in the dielectric loss factor (Tan\u03b4), efficient and reliable drying treatment becomes critical to restoring safe operation. 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This article provides a detailed comparison of two mainstream drying techniques\u2014hot oil circulation and vacuum drying\u2014explaining their principles, characteristics, and applicable scenarios to help you make an informed decision.","breadcrumb":{"@id":"https:\/\/www.lstransformer.com\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/#breadcrumb"},"inLanguage":"de","potentialAction":[{"@type":"ReadAction","target":["https:\/\/www.lstransformer.com\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/"]}]},{"@type":"ImageObject","inLanguage":"de","@id":"https:\/\/www.lstransformer.com\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/#primaryimage","url":"https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/1763443095677799.jpg","contentUrl":"https:\/\/www.lstransformer.com\/wp-content\/uploads\/2026\/07\/1763443095677799.jpg","width":370,"height":276},{"@type":"BreadcrumbList","@id":"https:\/\/www.lstransformer.com\/how-to-restore-dampened-insulation-in-transformers-in-humid-environments-in-depth-comparison-between-hot-oil-circulation-and-vacuum-drying-processes\/#breadcrumb","itemListElement":[{"@type":"ListItem","position":1,"name":"\u9996\u9875","item":"https:\/\/www.lstransformer.com\/"},{"@type":"ListItem","position":2,"name":"How to Restore Dampened Insulation in Transformers in Humid Environments? 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