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Thermal Conductivity of Transformer Oil From 253 K to 363 K

×÷Õß:Wang, HJ (Wang, H. J.)[ 1 ] ; Ma, SJ (Ma, Sh J.)[ 1 ] ; Yu, HM (Yu, H. M.)[ 1 ] ; Zhang, Q (Zhang, Q.)[ 1 ] ; Guo, CM (Guo, Ch M.)[ 1 ] ; Wang, P (Wang, P.)[ 1 ]

PETROLEUM SCIENCE AND TECHNOLOGY

¾í: 32

ÆÚ: 17

Ò³: 2143-2150

DOI: 10.1080/10916466.2012.757235

³ö°æÄê: 2014

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Transport properties of transformer oil are important parameters for electric equipment designing. In this work, thermal conductivity was measured from 253 K to 363 K by single transient hot-wire technique. And influence of transformer oil's thermal conductivity was investigated. It is found that the thermal conductivity decreases linearly with increasing temperature. When different oils are mixed together, the thermal conductivity shows additive property. For different oils with about the same viscosities, their thermal conductivities are directly related to alkane and aromatic content, while for oils with the same oil source, oil refinery process, similar carbon type, and different boiling range, the thermal conductivity increases with its viscosity.
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×÷Õ߹ؼü´Ê:hydrocarbon composition; thermal conductivity; transformer oil; transient hot-wire; viscosity

KeyWords Plus:HOT-WIRE METHOD
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ͨѶ×÷ÕßµØÖ·: Wang, HJ (ͨѶ×÷Õß)
[ÏÔʾÔöÇ¿×éÖ¯ÐÅÏ¢µÄÃû³Æ]         CNPC, Karamay Lubricant Res Inst, Karamay 834003, Peoples R China.

µØÖ·:
              [ 1 ] PetroChina Lanzhou Lubricating Oil R&D Res Inst, Karamay, Peoples R China

µç×ÓÓʼþµØÖ·:wanghuijuan_rhy@petrochina.com.cn
³ö°æÉÌ

TAYLOR & FRANCIS INC, 530 CHESTNUT STREET, STE 850, PHILADELPHIA, PA 19106 USA
Àà±ð / ·ÖÀà

Ñо¿·½Ïò:Energy & Fuels; Engineering

Web of Science Àà±ð:Energy & Fuels; Engineering, Chemical; Engineering, Petroleum
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ÎÄÏ×ÀàÐÍ:Article

ÓïÖÖ:English

Èë²ØºÅ: WOS:000339072300014

ISSN: 1091-6466

µç×Ó ISSN: 1532-2459
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    Impact Factor (Ó°ÏìÒò×Ó): Journal Citation Reports®

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IDS ºÅ: AL3ZR

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wanghuijuan627: ½ð±Ò+2, ¡ïÓаïÖú 2014-11-09 21:01:02
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Accession number:
       

20142817932508
         
Title:
        Thermal conductivity of transformer oil from 253 k to 363 K
         
Authors:
        Wang, H.J.1 Email author wanghuijuan_rhy@petrochina.com.cn; Ma, Sh. J.1; Yu, H.M.1; Zhang, Q.1; Guo, Ch. M.1; Wang, P.1
          Author affiliation:         1 PetroChina Lanzhou Lubricating Oil RandD Research Institute, Karamay, China
         
Corresponding author:
        Wang, H.J. (wanghuijuan_rhy@petrochina.com.cn)
         
Source title:
        Petroleum Science and Technology
         
Abbreviated source title:
        Petrol Sci Technol
         
Volume:
        32
         
Issue:
        17
         
Issue date:
        September 2, 2014
         
Publication year:
        2014
         
Pages:
        2143-2150
         
Language:
        English
         
ISSN:
        10916466
         
E-ISSN:
        15322459
         
CODEN:
        PSTEFV
         
Document type:
        Journal article (JA)
         
Publisher:
        Taylor and Francis Inc., 325 Chestnut St, Suite 800, Philadelphia, PA 19106, United States
         
Abstract:
        Transport properties of transformer oil are important parameters for electric equipment designing. In this work, thermal conductivity was measured from 253 K to 363 K by single transient hot-wire technique. And influence of transformer oil's thermal conductivity was investigated. It is found that the thermal conductivity decreases linearly with increasing temperature. When different oils are mixed together, the thermal conductivity shows additive property. For different oils with about the same viscosities, their thermal conductivities are directly related to alkane and aromatic content, while for oils with the same oil source, oil refinery process, similar carbon type, and different boiling range, the thermal conductivity increases with its viscosity. © Taylor & Francis Group, LLC.
         
Number of references:
        9
         
Main heading:
        Thermal conductivity
         
Controlled terms:
        Electric equipment  -  Electric properties  -  Insulating oil  -  Oil filled transformers  -  Oil wells  -  Viscosity  -  Wire
         
Uncontrolled terms:
        Aromatic contents  -  Boiling range  -  Hydrocarbon compositions  -  Increasing temperatures  -  Oil refineries  -  Oil sources  -  Transient hot wire technique  -  Transient hot-wire
         
Classification code:
        413.1 Electric Insulating Materials -  512.1.1 Oil Fields -  535.2 Metal Forming -  631.1 Fluid Flow, General -  641.2 Heat Transfer -  701.1 Electricity: Basic Concepts and Phenomena -  704.2 Electric Equipment
          DOI:         10.1080/10916466.2012.757235
         
Database:
        Compendex
                  Compilation and indexing terms, © 2014 Elsevier Inc.
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wanghuijuan627: ½ð±Ò+5, ¡ï¡ï¡ïºÜÓаïÖú 2014-11-09 21:00:44
SCIÈë²ØºÅ: WOS:000339072300014
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