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A Convergence Study on the Flow near Vehicle by the Configuration of Roof Box

루프 박스의 형상별 차량 주위에서의 유동에 관한 융합 연구

  • Oh, Bum-Suk (Division of Mechanical & Automotive Engineering, Kongju National University) ;
  • Cho, Jae-Ung (Division of Mechanical & Automotive Engineering, Kongju National University)
  • 오범석 (공주대학교 기계자동차공학부) ;
  • 조재웅 (공주대학교 기계자동차공학부)
  • Received : 2019.07.26
  • Accepted : 2019.10.20
  • Published : 2019.10.28

Abstract

In this study, the flow analysis around vehicle was carried out on various kinds of roof box models installed at the roof of vehicle. Through the analysis of fluid flow and pressure, we investigated which model was more suitable for driving. The four types of models were designed with their respective shapes of models 1, ${\beta}$, ${\delta}$ and ${\gamma}$, and the driving speed of car was set as 20 m/s. It was confirmed that the pressure for model ${\beta}$ became greatest compared to other models. And model ${\delta}$ has the lowest pressure among all models of roof boxes by installing a canoe with the structure for cable type. As the design data with the durability of roof box obtained on the basis of this study result are utilized, the esthetic sense can be shown by being grafted onto the car body at real life.

본 연구에서는 차량의 루프에 장착되는 다양한 종류들의 루프 박스 모델들에 대한 자동차 주위에서의 유동해석을 하였다. 유체의 흐름 및 압력 해석을 통하여 어떠한 모델이 운행에 있어서 더 적합한지에 대하여 고찰하였다. 4종류의 모델은 각자의 모양을 가진 모델 1, ${\beta}$, ${\gamma}$${\delta}$로 설정하여 설계를 하였고 주행 속도는 20m/s로 설정하였다. 모델 ${\beta}$의 경우는 압력이 다른 모델에 비해 가장 크게 나오고, 모델 ${\delta}$는 유선형의 구조인 카누를 장착하여 루프 박스들 중에는 가장 낮은 압력을 가진다는 것을 확인하였다. 본 연구결과를 토대로 얻은 루프박스의 내구성 있는 설계데이터를 활용함으로서 실생활에서의 차체에 융합하여 그 미적 감각을 나타낼 수 있다.

Keywords

References

  1. M. S. Han & J. U. Cho. (2014). Flow Analysis of Mounting Gradient of Protective Glass Around Motorcycle. Journal of the Korean Society of Manufacturing Technology Engineers, 23(6), 596-601. DOI :10.7735/ksmte.2014.23.6.596.
  2. J. U. Cho. (2012). Flow analysis of air due to the shapes of motorbike. Journal of Korean Society of Mechanical Technology, 14(1), 53-60. https://doi.org/10.17958/ksmt.14.1.201202.53
  3. J. U. Cho & M. S. Han. (2010). Flow Analysis on the Outside of Automotive Body. Journal of the Korean Society of Manufacturing Process Engineers, 9(1), 55-60.
  4. H. C. Lee & J. U. Cho. (2014). Study of the Shape of Car Body Affecting Flow Resistance of Air Flowing Near Car. Journal of the Korea Academia-Industrial cooperation Society. 15(8), 4707-4712. DOI :10.5762/KAIS.2014.15.8.4707.
  5. M. S. Han & J. U. Cho. (2016). Flow Analysis due to the Configuration of Automotive Spoiler. Transaction of the Korean Society of Automotive Engineers, 24(6), 677-683. https://doi.org/10.7467/KSAE.2016.24.6.677
  6. B. S. Oh & J. U. Cho. (2018). A Convergence Study through Flow Analysis due to the Configuration of Automotive Air Breather. Journal of the Korea Convergence Society, 9(10), 265-270. DOI :10.15207/JKCS.2018.9.10.265.
  7. J. U. Cho. (2015). Study on Convergence Technique through the Flow Analytical Study inside the Faucet for Bathroom. Journal of the Korea Convergence Society, 6(2), 37-42. DOI :10.15207/JKCS.2015.6.2.037.
  8. H. C. Lee & J. U. Cho. (2014). A Study on Air Flow Analysis due to the Shape of Automotive Body. Journal of the Korea Convergence Society, 5(2), 19-23. DOI :10.15207/JKCS.2014.5.2.019.
  9. J. H. Lee & J. U. Cho. (2015). Study on Convergence Technique through Flow Analysis at the Flexible Joint of the Pipe Laying. Journal of the Korea Convergence Society, 6(3), 13-18. DOI :10.15207/JKCS.2015.6.3.013.
  10. K. S. Ahn, J. G. Oh, T. H. Yang & G. T. Yeo. (2019). An analysis of the Factors of Moving in and Activation Strategies for Incheon Cold-Chain Cluster using LNG cold energy. Journal of Digital Convergence, 17(2), 101-111. DOI : 10.14400/JDC.2019.17.2.101.
  11. S. Y. Min, S. I. Kim. (2018). Study on Improvement of tap water drinking rate of Seoul city Tap water 'Arisu' through usage and recognition analysis. Journal of Digital Convergence, 16(9), 399-404. https://doi.org/10.14400/JDC.2018.16.9.399
  12. J. S. Lim. (2019). A Design of Small Size Sensor Data Acquisition and Transmission System. Journal of Convergence for Information Technology, 9(1), 136-141. DOI :10.22156/CS4SMB.2019.9.1.136.
  13. J. H. Ku. (2017). A Study on the Platform for Big Data Analysis of Manufacturing Process. Journal of Convergence for Information Technology, 7(5), 177-182. DOI :10.22156/CS4SMB.2017.7.5.177.
  14. S. G. Kim, J. H. Kang, X. Song & Y. C. Park. (2007). Relationship of Flow coefficient and Accuracy of opening Bellows Seal Valve, The Korean Society of Manufacturing Process Engineers, 10(11), 205-208.
  15. B. M. Jang & D. H. Cho. (2019). A Study on the Flow Characteristics around Vertical Wall with Flap. Journal of Korean Society of Mechanical Technology, 21(2), 248-253. https://doi.org/10.17958/ksmt.21.2.201904.248