2018
DOI: 10.1155/2018/5475136
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Numerical Study of Convection and Radiation Heat Transfer in Pipe Cable

Abstract: Pipe cable is considered as an important form for underground transmission line. The maximum electrical current (ampacity) of power cable system mostly depends on the cable conductor temperature. Therefore, accurate calculation of temperature distribution in the power cable system is quite important to extract the cable ampacity. In the present paper, the fluid flow and heat transfer characteristics in the pipe cable with alternating current were numerically studied by using commercial code COMSOL MULTIPHYSICS… Show more

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Cited by 12 publications
(20 citation statements)
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References 18 publications
(22 reference statements)
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“…In the present study, the electromagnetic effect, heat transfer, and air flow are coupled with each other [18]. e computational domain is divided into a solid domain and fluid domain for the coupling computations.…”
Section: Governing Equations and The Computational Methodmentioning
confidence: 99%
See 3 more Smart Citations
“…In the present study, the electromagnetic effect, heat transfer, and air flow are coupled with each other [18]. e computational domain is divided into a solid domain and fluid domain for the coupling computations.…”
Section: Governing Equations and The Computational Methodmentioning
confidence: 99%
“…Subsequently, the computational model and methods are validated. Since the numerical study on multiphysics coupling simulation for the trench laying cable is few, the numerical simulations for the pipe laying cable [18] are restudied. e physical model for the pipe laying cable [18] is presented in Figure 4.…”
Section: Model Validationsmentioning
confidence: 99%
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“…The numerical results presented good agreement with experimental measurements. Chen-Zhao et al [9] studied the fluid flow and heat transfer characteristics in the pipe cable with alternating current by using commercial code COMSOL Multiphysics based on the finite element method. Bade et al [10] used the MATLAB/Simulink numerical model of a single cylinder, mechanical spring assisted, two-stroke natural gas fueled, spark-ignited oscillating linear engine alternator to investigate the effect of combustion and heat transfer characteristics on translator dynamics and performance.…”
Section: Literature Reviewmentioning
confidence: 99%