:Evaluation of numerical ablation model for charring composites论文

:Evaluation of numerical ablation model for charring composites论文

本文主要研究内容

作者(2019)在《Evaluation of numerical ablation model for charring composites》一文中研究指出:Charring composites are widely used in the thermal protection system(TPS) to consume the intense aerodynamic heating during vehicle reentry. The ablation and thermal responses for the charring composites can be studied by using a numerical ablation model, in which the surface ablation and volume ablation could be taken into account. The coupling interactions among temperature, gas motion and interior pressure producing the pyrolysis gas could make the computation more complicated. A multi-physics model is developed to simulate the thermal response coupled with volume ablation and surface ablation. After studying four typical ablation cases, the model is validated, and then the heat transfer mechanisms in ablation are investigated. It is found that the viscous dissipation energy by the motion of pyrolysis gas can be neglected in the simulation. Also, the flow of pyrolysis gas plays an important role in the temperature response, especially under high heat flux condition.

Abstract

Charring composites are widely used in the thermal protection system(TPS) to consume the intense aerodynamic heating during vehicle reentry. The ablation and thermal responses for the charring composites can be studied by using a numerical ablation model, in which the surface ablation and volume ablation could be taken into account. The coupling interactions among temperature, gas motion and interior pressure producing the pyrolysis gas could make the computation more complicated. A multi-physics model is developed to simulate the thermal response coupled with volume ablation and surface ablation. After studying four typical ablation cases, the model is validated, and then the heat transfer mechanisms in ablation are investigated. It is found that the viscous dissipation energy by the motion of pyrolysis gas can be neglected in the simulation. Also, the flow of pyrolysis gas plays an important role in the temperature response, especially under high heat flux condition.

论文参考文献

  • [1].The influence of ablation products on the ablation resistance of C/C-SiC composites and the growth mechanism of SiO2nanowires[J]. 李县辉,燕青芝,米应映,韩永军,温馨,葛昌纯.  Chinese Physics B.2015(02)
  • [2].Laser ablation behaviors of C/SiC composites in air[J]. SU Meng,CHENG Laifei,LUAN Xingang,ZHANG Litong.  复合材料学报.2013(06)
  • [3].Ablative Property of C/C–SiC–HfC Composites Prepared via Precursor Infiltration and Pyrolysis under 3,000 °C Oxyacetylene Torch[J]. Min Yan,Hejun Li,Qiangang Fu,Jing Xie,Lei Liu,Bo Feng.  Acta Metallurgica Sinica(English Letters).2014(06)
  • [4].SiC Nanowires Toughed HfC Ablative Coating for C/C Composites[J]. Hejun Li,Yongjie Wang,Qiangang Fu,Yanhui Chu.  Journal of Materials Science & Technology.2015(01)
  • [5].Ablation Properties of the Carbon-Based Composites Used in Artificial Heat Source Under Fire Accident[J]. TANG Xian,HUANG Jin-ming,ZHOU Shao-jian,LUO Zhi-fu.  Annual Report of China Institute of Atomic Energy.2012(00)
  • [6].Overcoming the barrier of nanoparticle production by femtosecond laser ablation in liquids using simultaneous spatial and temporal focusing[J]. CARLOS DO?ATE-BUENDíA,MERCEDES FERNáNDEZ-ALONSO,JESúS LANCIS,GLADYS MíNGUEZ-VEGA.  Photonics Research.2019(11)
  • [7].Ablation Mechanism of HfC-HfO2Protective Coating for SiC-Coated C/C Composites in an Oxyacetylene Torch Environment[J]. Yang Yang,Kezhi Li,Guanxi Liu,Zhigang Zhao.  Journal of Materials Science & Technology.2017(10)
  • [8].Water oxidation electrocatalysis with iron oxide nanoparticles prepared via laser ablation[J]. Erica Pizzolato,Stefano Scaramuzza,Francesco Carraro,Alessia Sartori,Stefano Agnoli,Vincenzo Amendola,Marcella Bonchio,Andrea Sartorel.  Journal of Energy Chemistry.2016(02)
  • [9].Ablation Property of Ceramics/Carbon Fibers/Resin Novel Super-hybrid Composite[J]. Jun QIU, Xiaoming CAO, Chong TIAN and Jinsong ZHANG Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China School of Materials Science and Engineering, Shenyang Institute of Chemical Technology, Shenyang 110021, ChinaProf.,.  Journal of Materials Science & Technology.2005(01)
  • [10].Ablation Performance of a Novel Super-hybrid Composite[J]. Jun QIU, Xiaoming CAO, Chong TIAN and Jinsong ZHANG Institute of Metal Research ,Chinese Academy of Science, Shenyang 110016, China School of Material Science and Engineering, Tongji University, Shanghai 200092, China.  Journal of Materials Science & Technology.2005(02)
  • 论文详细介绍

    论文作者分别是来自Science China(Technological Sciences)的,发表于刊物Science China(Technological Sciences)2019年08期论文,是一篇关于,Science China(Technological Sciences)2019年08期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Science China(Technological Sciences)2019年08期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

    标签:;  

    :Evaluation of numerical ablation model for charring composites论文
    下载Doc文档

    猜你喜欢