Research Article

Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel

Volume: 9 Number: 6 November 30, 2023
  • Satish Kumar Dhurandhar *
  • Shobha Lata Sınha
  • Shashi Kant Verma
EN

Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel

Abstract

The spacer represents an essential part in the nuclear fuel rod. Spacer grid with mixing vanes in fuel rod bundle of nuclear reactor core has a significant impact on heat transfer perfor-mance in downstream to grid spacer. Grid Spacers are located on the nuclear fuel rod as-sembly to hold suitable clearance among the rods in a bundle. The objective of this paper is to study the enhanced heat transfer performance of R134a at supercritical pressure 4.5 MPa near downstream to mixing vane spacer in a vertical channel of annular flow. A spacer of 0.38 blockage ratio with mixing vanes, situated at mid-span of an annular channel is used in the present work. Numerical simulations have been accomplished for spacer with mixing vane and spacer without mixing vane in an annular channel by using commercial CFD (Computa-tional fluid dynamics) code ANSYS Fluent. The present investigation represents the compara-tive study for spacer with mixing vane and spacer without mixing vane effects on heat transfer and flow field characteristics in a downstream direction for mass flow-rate 0.41469 kg/s and heat flux 160 kW/m2. The results indicate that spacer with mixing vane has notable influence on heat transfer performance and flow field characteristics downstream of mixing vane spacer as compared to spacer without mixing vane. Wall temperature fall and increase of coefficient of heat transfer are significantly greater adjacent to spacer downstream. Spacer influence in the improvement of the heat transfer is noted up to distance X/D = 40 downstream and then flow is found as fully developed.

Keywords

References

  1. REFERENCES
  2. [1] Doe US. Nuclear Energy Advisory Committee and Generation IV International Forum. A Technology Roadmap for Generation IV Nuclear Energy System; 2002. Available at: https://www.gen-4.org/gif/upload/docs/application/pdf/2013-09/genivroadmap2002.pdf. Accessed Nov 6, 2023.
  3. [2] Wang H, Bi Q, Yang Z, Gang W, Hu R. Experimental and numerical study on the enhanced effect of spiral spacer to heat transfer of supercritical pressure water in vertical annular channels. Appl Therm Eng 2012;48:436–445. [CrossRef]
  4. [3] Ishiwatari Y, Hongo I, Oka Y, Morooka S, Saito T, Ikejiri S. Numerical analysis of heat transfer enhancement by grid spacers in supercritical water. NURETH-13: 13. international topical meeting on nuclear reactor thermal hydraulics; Kanazawa, Ishikawa (Japan); Shimbashi, Minato, Tokyo; 2009.
  5. [4] Gang W, Bi Q, Yang Z, Wang H, Zhu X, Hao H, et al. Experimental investigation of heat transfer for supercritical pressure water flowing in vertical annular channels. Nucl Eng Des 2011;241:4045–4054. [CrossRef]
  6. [5] Zhu Y, Laurien E. Numerical investigation of supercritical water cooling channel flows around a single rod with a wrapped wire. Proceedings of ICAPP, San Diego, California, USA; 2010. [CrossRef]
  7. [6] Yamagata K, Nishikawa K, Hasegawa S, Fujii T, Yoshida S. Forced convective heat transfer to supercritical water flowing in tubes. Int J Heat Mass Transf 1972;15:2575–2593. [CrossRef]
  8. [7] Swenson HS, Carver JR, Kakarala CR. Heat transfer to supercritical water in smooth-bore tubes. J Heat Transf 1965;87:477–484. [CrossRef]

Details

Primary Language

English

Subjects

Thermodynamics and Statistical Physics

Journal Section

Research Article

Authors

Satish Kumar Dhurandhar * This is me
0000-0001-5482-4417
India

Shobha Lata Sınha This is me
0000-0002-5158-9260
India

Shashi Kant Verma This is me
0000-0003-0660-3569
India

Publication Date

November 30, 2023

Submission Date

July 2, 2021

Acceptance Date

November 4, 2021

Published in Issue

Year 2023 Volume: 9 Number: 6

APA
Dhurandhar, S. K., Sınha, S. L., & Verma, S. K. (2023). Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel. Journal of Thermal Engineering, 9(6), 1428-1441. https://doi.org/10.18186/thermal.1395460
AMA
1.Dhurandhar SK, Sınha SL, Verma SK. Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel. Journal of Thermal Engineering. 2023;9(6):1428-1441. doi:10.18186/thermal.1395460
Chicago
Dhurandhar, Satish Kumar, Shobha Lata Sınha, and Shashi Kant Verma. 2023. “Numerical Simulation to Study Mixing Vane Spacer Effects on Heat Transfer Performance of Supercritical Pressure Fluid in an Annular Channel”. Journal of Thermal Engineering 9 (6): 1428-41. https://doi.org/10.18186/thermal.1395460.
EndNote
Dhurandhar SK, Sınha SL, Verma SK (November 1, 2023) Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel. Journal of Thermal Engineering 9 6 1428–1441.
IEEE
[1]S. K. Dhurandhar, S. L. Sınha, and S. K. Verma, “Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel”, Journal of Thermal Engineering, vol. 9, no. 6, pp. 1428–1441, Nov. 2023, doi: 10.18186/thermal.1395460.
ISNAD
Dhurandhar, Satish Kumar - Sınha, Shobha Lata - Verma, Shashi Kant. “Numerical Simulation to Study Mixing Vane Spacer Effects on Heat Transfer Performance of Supercritical Pressure Fluid in an Annular Channel”. Journal of Thermal Engineering 9/6 (November 1, 2023): 1428-1441. https://doi.org/10.18186/thermal.1395460.
JAMA
1.Dhurandhar SK, Sınha SL, Verma SK. Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel. Journal of Thermal Engineering. 2023;9:1428–1441.
MLA
Dhurandhar, Satish Kumar, et al. “Numerical Simulation to Study Mixing Vane Spacer Effects on Heat Transfer Performance of Supercritical Pressure Fluid in an Annular Channel”. Journal of Thermal Engineering, vol. 9, no. 6, Nov. 2023, pp. 1428-41, doi:10.18186/thermal.1395460.
Vancouver
1.Satish Kumar Dhurandhar, Shobha Lata Sınha, Shashi Kant Verma. Numerical simulation to study mixing vane spacer effects on heat transfer performance of supercritical pressure fluid in an annular channel. Journal of Thermal Engineering. 2023 Nov. 1;9(6):1428-41. doi:10.18186/thermal.1395460

Cited By

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