[1] Norajitra P, Abdel-Khalik S I, Giancarli L M, et al. Divertor conceptual designs for a fusion power plant[J]. Fusion Engineering & Design, 2008, 83(7): 893–902.
[2] Tillack M S, Raffray A R, Wang X R, et al. Recent US activities on advanced He-cooled W-alloy divertor concepts for fusion power plants[J]. Fusion Engineering & Design, 2011, 86(1): 71-98.
[3] Gayton E F. Experimental and numerical investigation of the thermal performance of the gas-cooled divertor plate concept[J]. Fusionence & Technology, 2009, 56(1): 75-79.
[4] Boštjan Kon?ar, Draksler M, Oblak K. Numerical investigation of multiple-jet cooling concept for helium cooled divertor[C]. Nuclear Energy for New Europe, 2008, Potoroz Slovenia September 8-11.
[5] Boštjan Kon?ar, Simonovski I, Martin Draksler. Influence of multiple jet cooling on the heat transfer and thermal stresses in DEMO divertor cooling finger[J]. Fusion Engineering & Design, 2011, 86(2): 167-173.
[6] Boštjan Kon?ar, Prachai Norajitra, Klemen Oblak. Effect of nozzle sizes on jet impingement heat transfer in He-cooled divertor[J]. Applied Thermal Engineering, 2010, 30(6-7): 697–705.
[7] Ihli T, Kruessmann R, Ovchinnikov I, et al. An advanced He-cooled divertor concept: design, cooling technology, and thermohydraulic analyses with CFD[J]. Fusion Engineering & Design, 2005, (11): 371–375.
[8] Norajitra P, Giniyatulin R, Kuznetsov V, et al. He-cooled divertor for DEMO: status of development and HHF tests[J]. Fusion Engineering & Design, 2010, 85(10): 2251–2256.
[9] Norajitra P. Divertor development for a future fusion power plant[D]. KIT, Germany, 2011.
[10] Widak V, Norajitra P. Optimization of He-cooled divertor cooling fingers using a CAD-FEM method[J]. Fusion Engineering & Design, 2009, 84: 1973–1978.
[11] Wang P H, Chen J M, Xu Z Y, et al. Research and development of reduced activation ferritic martensitic steel CLF-1 in SWIP[C]. 23rd IAEA Fusion Energy Conference, Daejon, Republic of Korea, 2010.
[12] Davis J W, Smith P D. ITER material properties handbook[J]. J. Nucl. Mater., 1996, s233–237(Part 2): 1593-1596.