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35. Zhang, Zhensheng, Junjie Liu, Shuyan He, Zhengming Zhang, and Yu. Suyuan. 2002. Structural design of ceramic internals of htr-10. Nuclear Engineering & Design 218 (1): 123–136.
36. Bess, John D., Leland M. Montierth, Oliver Köberl, and Luka Snoj. 2014. Benchmark evaluation of htr-proteus pebble bed experimental program. Nuclear Science & Engineering the
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37. Ronen, Yigal, Menashe Aboudy, Dror Regev, and Erez Gilad. 2012. Proliferation resistant fuel
for pebble bed modular reactors. Nuclear Science & Engineering the Journal of the American
Nuclear Society 175 (2): 149–156.
38. Uñac, R.O., A.M. Vidales, O.A. Benegas, and I. Ippolito. 2012. Experimental study of discharge rate fluctuations in a silo with different hopper geometries. Powder Technology 225
(7): 214–220.
39. Maziar Dehghan and Hassan Basirat Tabrizi. 2012. On near-wall behavior of particles in a
dilute turbulent gas-solid flow using kinetic theory of granular flows. Powder Technology 224
(224): 273–280.
40. István, Oldal, Keppler István, Csizmadia Bela, and Fenyvesi Laszlo. 2012. Outflow properties
of silos: The effect of arching. Advanced Powder Technology the International Journal of the
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41. González-Montellano, C., Á. Ramírez, E. Gallego, and F. Ayuga. 2011. Validation and experimental calibration of 3D discrete element models for the simulation of the discharge flow in
silos. Chemical Engineering Science 66 (21): 5116–5126.
42. Baleviˇ cius, R., R. Kaˇ cianauskas, Z. Mróz, and I. Sielamowicz. 2011. Analysis and dem simulation of granular material flow patterns in hopper models of different shapes. Advanced
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43. Choi, Jaehyuk, Arshad Kudrolli, Rodolfo R. Rosales, and Martin Z. Bazant. 2004. Diffusion
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44. Zhong, Wenfa, Xingqing Jing, Jingyu Luo, and Shilin Li. 1995. The application of simulation
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45. Jaeger, Heinrich M., Sidney R. Nagel, and Robert P. Behringer. 1996. Granular solids, liquids,
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46. Ottino, J.M., and D.V. Khakhar. 2000. Mixing and segregation of granular materials. Annual
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29
28. Zhou, Jianhua, Yu. Aibing, and Yuwen Zhang. 2007. A boundary element method for evaluation of the effective thermal conductivity of packed beds. Journal of Heat Transfer 129 (3):
363.
29. Stöcker, B., and H.F. Niesses. 1997. Data sets of the SANA Experiment 1994-1996. Jülich:
Forschungszentrum Jülich.
30. Rousseau, P.G., C.G. Du Toit, W. Van Antwerpen, and H.J. Van Antwerpen. 2014. Separate
effects tests to determine the effective thermal conductivity in the pbmr httu test facility.
Nuclear Engineering & Design 271 (6): 444–458.
31. Rousseau, P.G., and M. van Staden. 2008. Introduction to the pbmr heat transfer test facility.
Nuclear Engineering and Design 238 (11): 3060–3072. HTR-2006: 3rd International Topical
Meeting on High Temperature Reactor Technology.
32. Cheng Ren, Xing Tuan Yang, Cong Xin Li, Zhi Yong Liu, and Sheng Yao Jiang. 2013. Design
of the essential material test equipment for the pebble bed effective thermal conductivity
measurement experiment. In Proceedings of in 21st International Conference on Nuclear
Engineering (ICONE21). 2014: Chengdu, China.
33. Hao, Wu, Nan Gui, Xingtuan Yang, Tu Jiyuan, and Shengyao Jiang. 2017. Numerical simulation of heat transfer in packed pebble beds: Cfd-dem coupled with particle thermal radiation.
International Journal of Heat & Mass Transfer 110: 393–405.
34. Li, C.X., X.Z. An, R.Y. Yang, R.P. Zou, and A.B. Yu. 2011. Experimental study on the packing
of uniform spheres under three-dimensional vibration. Powder Technology 208 (3): 617–622.
35. Zhang, Zhensheng, Junjie Liu, Shuyan He, Zhengming Zhang, and Yu. Suyuan. 2002. Structural design of ceramic internals of htr-10. Nuclear Engineering & Design 218 (1): 123–136.
36. Bess, John D., Leland M. Montierth, Oliver Köberl, and Luka Snoj. 2014. Benchmark evaluation of htr-proteus pebble bed experimental program. Nuclear Science & Engineering the
Journal of the American Nuclear Society 178 (178): 387–400.
37. Ronen, Yigal, Menashe Aboudy, Dror Regev, and Erez Gilad. 2012. Proliferation resistant fuel
for pebble bed modular reactors. Nuclear Science & Engineering the Journal of the American
Nuclear Society 175 (2): 149–156.
38. Uñac, R.O., A.M. Vidales, O.A. Benegas, and I. Ippolito. 2012. Experimental study of discharge rate fluctuations in a silo with different hopper geometries. Powder Technology 225
(7): 214–220.
39. Maziar Dehghan and Hassan Basirat Tabrizi. 2012. On near-wall behavior of particles in a
dilute turbulent gas-solid flow using kinetic theory of granular flows. Powder Technology 224
(224): 273–280.
40. István, Oldal, Keppler István, Csizmadia Bela, and Fenyvesi Laszlo. 2012. Outflow properties
of silos: The effect of arching. Advanced Powder Technology the International Journal of the
Society of Powder Technology Japan 23 (3): 290–297.
41. González-Montellano, C., Á. Ramírez, E. Gallego, and F. Ayuga. 2011. Validation and experimental calibration of 3D discrete element models for the simulation of the discharge flow in
silos. Chemical Engineering Science 66 (21): 5116–5126.
42. Baleviˇ cius, R., R. Kaˇ cianauskas, Z. Mróz, and I. Sielamowicz. 2011. Analysis and dem simulation of granular material flow patterns in hopper models of different shapes. Advanced
Powder Technology 22 (2): 226–235.
43. Choi, Jaehyuk, Arshad Kudrolli, Rodolfo R. Rosales, and Martin Z. Bazant. 2004. Diffusion
and mixing in gravity-driven dense granular flows. Physical Review Letters 92 (17): 174301.
44. Zhong, Wenfa, Xingqing Jing, Jingyu Luo, and Shilin Li. 1995. The application of simulation
of pebble flow in reactor physics for htr. Chinese Journal of Computational Physics 12 (3):
325–329.
45. Jaeger, Heinrich M., Sidney R. Nagel, and Robert P. Behringer. 1996. Granular solids, liquids,
and gases. Reviews of Modern Physics, 1259–1273.
46. Ottino, J.M., and D.V. Khakhar. 2000. Mixing and segregation of granular materials. Annual
Review of Fluid Mechanics 32 (1): 55–91.
