Effect of non-uniform temperature distribution on entropy generation and enthalpy for the laminar developing pipe flow of a high Prandtl number fluid

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 222

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شناسه ملی سند علمی:

JR_CHRL-2-3_001

تاریخ نمایه سازی: 6 شهریور 1402

چکیده مقاله:

In this article, Entropy generation and enthalpy are investigated on the pipe wall in developed laminar flow for ۷ cases. Variation of entropy generation and enthalpy are shown along the radius. Entropy generation and enthalpy along the radius are obtained. Heat transfer is increased with the flow of fluid through the pipe, in inlet of pipe points to the output. The amount of entropy generation in the pipes of higher temperature is more than other points. Enthalpy is proportional to temperature in surface variation of ۷ cases. In the points of higher temperature in elementary cases, the enthalpy value is increasing and it is increasing in other cases. Fluctuations of enthalpy and entropy generation are producted in interface points of pipe surfaces. The diagram data can be used to measure the minimum entropy generation in pipe heat transfer. Minimum entropy generation is in surface whit high temperature. The enthalpy in centerline is constant and inlet enthalpy of the tube is greater than other point with higher temperatures in radial flow. The lowest enthalpy is obtained in tubes with lowest initial temperature (case ۷). Minimum entropy generation is presented in surface whit high temperature at the beginning (case ۱-۳) or high at the ending (case ۵-۷).

نویسندگان

Reza Kakulvand

Department of chemical Engineering, University of Sistan and Baluchestan, Zahedan, Iran

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  • M. A. Essa, and N. H. Mostafa, Theoretical and experimental ...
  • Y. Han, E. Yu, and Z. Han, Study on temperature ...
  • H. T. Xu, et al., Experimental study of the effect ...
  • S. Khanna, et al., Explicit expression for temperature distribution of ...
  • S. Khanna, S. Singh, and S.B. Kedare, Explicit expressions for ...
  • J. Park, J. Bae, and J.-Y. Kim, The current density ...
  • D. Wada, et al., Temperature distribution monitoring of a coiled ...
  • M. A. Irfan, and W. Chapman, Thermal stresses in radiant ...
  • M. Wang, H. Guo, and C. Ma, Temperature distribution on ...
  • Rouizi, Y., D. Maillet, and Y. Jannot, Fluid temperature distribution ...
  • M. Torabi, and K. Zhang, Temperature distribution, local and total ...
  • H. Guo, et al., Experimental study of temperature distribution on ...
  • M. Canavar, et al., Investigation of temperature distribution and performance ...
  • Y. Mu, et al., Temperature distribution and evolution characteristic in ...
  • E. Pal, et al., Experimental and CFD simulations of fluid ...
  • F. Wu, W. Zhou, and X. Ma, Natural convection in ...
  • X. Wang, et al., Experimental investigation on startup and thermal ...
  • C. Lou, et al., Experimental investigation on simultaneous measurement of ...
  • M. Y. Park, B.J. Kim, and E.S. Kim, Development of ...
  • F. A. Fazzolari, Natural frequencies and critical temperatures of functionally ...
  • Bejan, A Convection heat transfer. Fourth edition, Wiley, (۲۰۱۳) ...
  • نمایش کامل مراجع