Selected Publications
2019
1. Wu, J. T. He, T. B. Ju, Y.L. Design and optimization of natural gas liquefaction process using brazed plate heat exchangers based on the modified single mixed refrigerant process, Energy, 2019, 186:115819
2. Yin, L. Ju, Y. L. Comparison and analysis of two nitrogen expansion cycles for BOG Re-liquefaction systems for small LNG ships, Energy, 2019, 172: 769-776.
3. Cheng, H. Ju, Y. L. Fu, Y. Z. Thermal performance calculation with heat transfer correlations and numerical simulation analysis for typical LNG open rack vaporizer, Applied Thermal Engineering, 2019, 149(7): 1069-1079.
4. He, T. B. Chong, Z. R. Zheng, J. J. Ju, Y. L. Parvez, A. M. LNG cold energy utilization: Prospects and challenges, Energy, 2019, 170: 557-568.
5. He, T. B. Liu, Z. M. Ju, Y. L. Parvez, A. M. A comprehensive optimization and comparison of modified single mixed refrigerant and parallel nitrogen expansion liquefaction process for small-scale mobile LNG plant, Energy, 2019, 167: 1-12.
6. Xia, J. K. et al. (PandaX-II Collaboration), PandaX-II constraints on spin-dependent WIMP-nucleon effective interactions, Physics Letters B, 2019, 792: 193~198
7. Zhang, H.Z. et al. (PandaX-II Collaboration), Dark matter direct search sensitivity of the PandaX-4T experiment, Science China Physics, Mechanics & Astronomy, 2019, 62(3) 31011
2018
8. He, T. B. Karimia, I. A. Ju, Y.L. Review on the design and optimization of natural gas liquefaction processes for onshore and offshore applications, Chemical Engineering Research and Design, 2018, 132: 89-114
9. Wu, J. T. He, T. B. Ju, Y.L. Experimental study on CO2 frosting and clogging in a brazed plate heat exchanger for natural gas liquefaction process, Cryogenics, 2018, 91:128-135
10. Ren, X. X. et al. (PandaX-II Collaboration), Constraining Dark Matter Models with a Light Mediator at the PandaX-II Experiment, Phys. Rev. Lett., 2018,121, 021304
2017
11. Xue, F. R. Chen, Y. and Ju, Y.L. Design and optimization of a novel cryogenic Rankine power generation system employing binary and ternary mixtures as working fluids based on the cold exergy utilization of liquefied natural gas (LNG), Energy, 2017, 138: 706-721.
12. Li, M.F. Ju, Y.L. The analysis of the operating performance of a chiller system based on hierarchal cluster method, Energy and Buildings, 2017, 138: 695-703
13. Sha, L.L Ju, Y.L. Zhang, H. and Wang, J.X. The influence of the magnetic field on the convective heat transfer characteristics of Fe3O4/water nanofluids, Applied Thermal Engineering, 2017, 126(7): 108-116
14. Niu, W.C. Li, G. L. Ju, Y.L. and Fu, Y. Z. Design and analysis of the thermal insulation system for a new independent type B LNG carrier, Ocean Engineering, 2017, 142:51-61
15. Chen, M. and Ju, Y. L. Experimental study of quasi-periodic on-off phenomena in a small-scale traveling wave thermoacoustic heat engine, Cryogenics, 2017, 85:23-29.
16. Li, M.F. Ju, Y.L. Experimental measurements and evaluation of the expanded water repellent perlite used for the cargo containment system of LNG carrier, Cryogenics, 2017, 87:49-57
17. Li, M.F. Ju, Y.L. Experimental investigation on the thermal performance of wraparound loop heat pipe heat exchanger for heat recovery in air handling units, Heat Transfer Research, 2017, 48(14):1313–1326
18. Chen, X. et al. (PandaX-II Collaboration), Exploring the dark matter inelastic frontier with 79.6 days of PandaX-II data, Phys. Rev. D, 2017, 96, 102007
19. Cui, X. Y. et al. (PandaX-II Collaboration), Dark Matter Results from 54-Ton-Day Exposure of PandaX-II Experiment, Phys. Rev. Lett. 2017, 119, 081302
20. Fu, C. B. et al. (PandaX-II Collaboration), Limits on Axion Couplings from the First 80 Days of Data of the PandaX-II Experiment, Phys. Rev. Lett. 2017, 119, 181806
21. Fu, C. B. et al. (PandaX-II Collaboration), Spin-Dependent Weakly-Interacting-Massive-Particle–Nucleon Cross Section Limits from First Data of PandaX-II Experiment, Phys. Rev. Lett. 2017, 118, 071301
2016
22. Sha, L.L Ju, Y.L. Zhang, H. and Wang, J.X. Experimental investigation on the convective heat transfer of Fe3O4/water nanofluids under constant magnetic field, Applied Thermal Engineering, 2016, 113(11): 566-574
23. He, T.B. Ju, Y.L. Dynamic simulation of mixed refrigerant process for small-scale LNG plant in skid mount packages, Energy, 2016, 97: 350-358.
24. Chen, M. and Ju, Y. L. Simulation and experimental improvement on a small-scale Stirling thermo-acoustic engine, Frontiers in Energy, 2016, 10(1): 37-45
25. Xue, F.R. Chen, Y. Ju, Y.L. A review of cryogenic power generation cycles with liquefied natural gas cold energy utilization, Frontiers in Energy, 2016,10 (3): 363-374
26. Tan A. D. et al. (PandaX-II Collaboration). Dark matter search results from the commissioning run of PandaX-II, Phys. Rev. D. 2016, 93, 122009
27. Tan A. D. et al. (PandaX-II Collaboration). Dark matter results from first 98.7 days of data from the PandaX-II experiment, Phys. Rev. Lett. 2016, 117, 121303
2015
28. He, T.B. Ju, Y.L. Optimal synthesis of expansion liquefaction cycle for distributed-scale LNG plant, Energy, 2015, 88: 268-280.
29. Chen, M. and Ju, Y. L. Effect of different working gases on the performance of a small thermoacoustic Stirling engine, International Journal of Refrigeration, 2015, 51: 41-51.
30. Xiao, X. et al. (PandaX-II Collaboration). Low-mass dark matter search results from full exposure of the PandaX-I experiment, Physical Review D, 2015, 92(5), 052004.
2014
31. He, T.B. Ju, Y.L. Design and optimization of a novel mixed refrigerant cycle integrated with NGL recovery process for small-scale LNG plant, Industrial & Engineering Chemistry Research, 2014, 53 (13), 5545–5553
32. He, T.B. Ju, Y.L. A novel conceptual design of parallel nitrogen expansion liquefaction process for small-scale LNG (liquefied natural gas) plant in skid-mount packages. Energy. 2014, 75: 349-359.
33. He, T.B. Ju, Y.L. A novel process for small-scale pipeline natural gas liquefaction, Applied Energy, 2014 (115): 17–24
34. He, T.B. Ju, Y.L. Performance improvement of nitrogen expansion liquefaction process for small-scale LNG plant, Cryogenics, 2014, 61(5):111-119.
35. Wang, Z. Bao, L. Hao, X. H. Ju, Y.L. Design and construction of a cryogenic distillation device for removal of krypton for liquid xenon dark matter detectors, Review of Scientific Instruments, 2014, 85, 015116
36. Wang, Z. Bao, L. Hao, X. H. Ju, Y.L. Large scale xenon purification using cryogenic distillation for dark matter detectors, Journal of Instrumentation, 2014, 9, 11024
37. Cao, X. G. et al. (PandaX-II Collaboration). PandaX: a liquid xenon dark matter experiment at CJPL, Science China: Physics, Mechanics & Astronomy, 2014, 57(8): 1476-1494.
38. Xiao, M. J. et al. (PandaX-II Collaboration). First dark matter search results from the PandaX-I experiment, Science China Physics, Mechanics & Astronomy, 2014, 57(11): 2024-2030
2013
39. Chen, M. and Ju, Y.L. Design and experimental investigations on a small scale traveling wave thermoacoustic engine, Cryogenics, 2013, 54(2):10-15.
40. He, T.B. Ju, Y.L. Design and optimization of natural gas liquefaction process by utilizing gas pipeline pressure energy, Applied Thermal Engineering, 2013, 57(1):1-6.
41. He, T.B. Li, Q. Y. Ju, Y.L. Adsorption and desorption experimental study of carbon dioxide/methane mixture gas on 13X-type molecular sieves, Journal of Chemical Engineering of Japan, 2013, 46(12): 1-10
42. Tang, X. Sha, L.L. Zhang, H. and Ju, Y.L. A review of recent experimental investigations and theoretical analyses for pulsating heat pipes, Frontiers in Energy, 2013, 7(2): 161-173.
2012
43. Li, M.F. Zhang, H. and Ju, Y.L. Design and construction of a guarded hot plate apparatus operating down to liquid nitrogen temperature, Review of Scientific Instruments, 2012, 83: 075106.
44. Li, H.L. Ju, Y.L. Li, L. J. and Xu, D.G. Computational fluid dynamics simulation of 13-CO distillation in structured packing, Chemical Engineering Technology, 2012, 35(2): 334–340.
45. Gao, T. Shen, T.T. Lin, W. S. and Ju, Y.L. Experimental determination of CO2 solubility in liquid CH4/N2, mixtures at cryogenic temperatures, Industrial & Engineering Chemistry Research, 2012, 51(13), 9403−9408.
46. Gu, Y. Ju, Y.L. Chen, J. Shi, Z.J. Experimental investigation on pressure fluctuation of cryogenic liquid transport in pitching motion, Cryogenics, 2012, 52(4):530-537.
47. Gu, Y. Ju, Y.L. Investigation on the periodically oscillating pressure characteristics of the flow in the rolling pipe, Ocean Engineering, 2012, 55: 1–9.
48. Gu, Y. Ju, Y.L. Numerical simulation and analysis of periodically oscillating pressure characteristics of in-viscid flow in a rolling pipe, Frontiers in Energy, 2012, 6(1): 21–28.
49. Shen, Q.Q. Lin, W. S. Gu, A.Z. Ju, Y. L. A simplified model of direct-contact heat transfer in desalination system utilizing LNG cold energy. Frontiers in Energy, 2012, 6(2):122-128.
2011
50. Hao, X.H. Ju, Y.L. Lu, Y. J. Experimental study on the sealing clearance between the labyrinth sealing displacer and cylinder in the 10K G-M refrigerator, Cryogenics, 2011, 51(5):203-208.
51. Hao, X.H. Ju, Y.L. Lu, Y. J. Experimental study on the performance of the labyrinth sealing displacer for 10K G-M refrigerator, Cryogenics, 2011, 51(4):187-191.
52. Hao, X.H. Ju, Y.L. Upendra, B. Kasthurirengan, S. Influence of working gas on the performance of a standing wave thermoacoustic prime mover, Cryogenics, 2011, 51 (9): 559-561.
53. Hao, X.H. Ju, Y.L. Simulation and analysis on the flow field of the low temperature mini-type cold store, Heat and Mass Transfer, 2011, 47(7): 771–775.
54. Li, Q.Y. Wang, L. Ju, Y.L. Analysis of flammability limits for the liquefaction process of oxygen-bearing coal-bed methane, Applied Energy, 2011, 88(11): 2934-2939.
2010
55. Hao, X.H. Ju, Y. L. Experimental study on the low temperature regenerator packed with rectification meshes, Cryogenics, 50(6):390-396, 2010
56. Gu, Y. Ju, Y. L. Effect of parameters on performance of LNG-FPSO offloading system in offshore associated gas fields, Applied Energy, 87(11): 3393-3400, 2010
57. Li, Q. Y. Ju, Y. L. Design and analysis of liquefaction process for offshore associated gases, Applied Thermal Engineering, 30(11):2518-2525, 2010
58. Gu, Y. Li, Q.Y. and Ju, Y.L. Floating production, storage and offloading of liquefied natural gas for recovery, storage and end-use applications of marginal gas fields and offshore associated gas resources, Hydrocarbon World, 5 (1): 46-51, 2010
59. Li, Q. Y. Wang, L. Ju, Y. L. Liquefaction and impurity separation of oxygen-bearing coal-bed methane, Frontiers of Energy and Power Engineering in China, 4(3): 319–325, 2010
60. Li, H. L. Ju, Y. L. Li, L. J. Separation of isotope 13C using high performance structured packing, Chemical Engineering and Processing, 49:255–261, 2010
61. Li, H. L. Ju, Y. L. Li, L.J. Research on the mass production of 13C, Journal of Labelled Compounds and Radiopharmaceuticals, 53:332–345, 2010
Patents and Applications
1. Wang, G. Zhang, H. and Ju, Y. L. Energy-saving distillation system for high purity gas production based on LNG cold energy, Chinese Patent No. CN201721333022.5, Date:2018.04.27
2. Wang, G. Zhang, H. and Ju, Y. L. Method and system for energy-saving high purity gas production based on LNG cold energy, Chinese Patent No. CN201710963932.X, Date:2018.01.12
3. Chen, Y. Ju, Y. L. A cold storage refrigeration system and method using LNG cold energy in ship, Chinese Patent No. 201710456749.0, Date:2017.11.14
4. Ju, Y. L. Xue, F. R. Chen, Y. A novel cryogenic Rankine power and residual cold output system employing mixtures as working fluids based on the LNG cold exergy, Chinese Patent No. 201710235556.2, Date:2017.07.11
5. Ju, Y. L. He, T. B. A novel cold box integration with purification process and liquefaction for natural gas, Chinese Patent No. 201610244134.7,Date:2016.08.24
6. Ju, Y. L. He, T. B. A mixed refrigerant cycle process for LNG system and its method based on brazed plate heat exchanger, Chinese Patent No. 201610153928.2,Date:2016.07.06
7. Ju, Y.L. Fu, Y.Z. Li, G.L. Thermal insulation structure and construction method for independent cargo containment system (CCS) for LNG carriers, Chinese Patent No. 201510199083.6,Date:2015.07.29
8. Ju, Y.L. Fu, Y.Z. Li, G.L. A novel independent type B cargo containment system (CCS) with anti-spray screen for LNG carriers, Chinese Patent No. CN201610074852.4,Date:2018.05.01
9. Ju, Y.L. Fu, Y.Z. Li, G.L. Installation and fixing mechanism for independent type B cargo containment system (CCS) for LNG carriers, Chinese Patent No. 201410579504.3,Date: 2017.10.31
10. Ju, Y.L. Fu, Y.Z. Li, G.L. Thermal insulation and its geometrical structure for independent type B cargo containment system (CCS) for LNG carriers, Chinese Patent No. 201410577557.1,Date:2017.05.10
11. Ju, Y.L. Wang, Z. Hao, X. H. A cryogenic distillation system for ultra-high purity xenon gas, Chinese Patent No. 201410020577.9, Date:2014.04.30
12. Ju, Y. L. Chen, Y. A kind of power generation system and its method, Chinese Patent No. 201510279905.1, Date:2016.10.19
13. Zhang, H. and Ju, Y. L. A kind of energy-saving combustion system using liquid organic fuel for multi-function application, Chinese Patent No. 201510225519.4, Date:2016.08.24
14. Ju, Y.L. Hao, X. H. Zhu. T. J. A small-scale re-liquefaction device of boil-off gas (BOG) for natural gas recovery, Chinese Patent No. 201410020562.2, Date: 2016.02.10
15. Ju, Y.L. Hao, X. H. Zhu. T. J. No pump cycle method for the small-scale re-liquefaction device of boil-off gas (BOG) recovery, Chinese Patent No. 201410020588.7,Date:2016.02.16
16. Ju, Y.L. Hao, X. H. Zhu. T. J. Installation structure for the small-scale re-liquefaction device of boil-off gas (BOG) recovery, Chinese Patent No. 201410020565.6, Date:2016.01.13
17. Ju, Y. L. He, T. B. A novel single mixed refrigerant cycle integrated with NGL recovery process for small-scale LNG plant, Chinese Patent No. 201410083220.5, Date:2015.10.14
18. Ju, Y. L. He, T. B. The process and method for a small-scale mixed refrigerant process for liquefied natural gas, Chinese Patent No. 201310082270.7, Date:2015.07.08
19. Ju, Y. L. He, T. B. The process and method for a small-scale nitrogen-expansion process for liquefied natural gas, Chinese Patent No. 201310082291.5, Date:2014.6.18
20. Ju, Y. L. He, T. B. The process and apparatus for small-scale pipeline natural gas liquefaction with expander, Chinese Patent No. 201310159550.3,Date:2016.3.02
21. Ju, Y. L. He, T. B. The process and method to liquefy a part of natural gas by using the pressure exergy of the pipeline without any energy consumption, Chinese Patent No. 201310086863.0,Date:2015.10.14
22. Ju, Y. L, Fu, Y. Z. Liu, J. C. Design and simulation software for LNG seawater vaporizer, Software Registration No. 2014SR047704,Date:2014.4.23
23. Ju, Y. L, Fu, Y. Z. Liu, J. C. Thermal insulation design and simulation software of cargo containment system (CCS) for LNG carriers LNG, Software Registration No.2014SR145685,Date:2014.9.28
24. Ju, Y. L, Wang, G. Tang, X. Zhang, H. Air conditioner and refrigerator for mine flexible life capsule without external electrical power, Chinese Patent No. 201110292739.0,Date:2013.07.17
25. Li, M. F. Ju, Y.L. Liu, H. X. Line heat heater for heat plate protection, Chinese Patent No. 201010255460.0,Date:2013.01.02
26. Ju, Y.L. Li, M. F. Liu, L. D. Water repellent systems for expanded pearly rocks for liquefied natural gas ships, Chinese Patent No. 201110143623.0, Date:2012.07.25
27. Li, M. F. Ju, Y.L. Liu, H. X. Measurement instrument for thermal conductivity of protective heat plates for liquid nitrogen temperature zone, Chinese Patent No.201010245604.4, Date:2012.04.25
28. Hao, X. H. Ju, Y.L. Recharge rectifier element for cryogenic refrigerator, Chinese Patent No. 201010284842.6,Date:2012.01.05
29. Tang, X. Ju, Y. L, Wang, G. Li, M. F. An energy-saving apparatus suitable for room precision control air conditioning, Chinese Patent No. 201110273366.2,Date:2013.08.07
30. Ju, Y.L. Wang, G. A hybrid heat pipe heat exchangers, Chinese Patent No. 200910307503.2,Date:2010.12.01
31. Li, Q. Y. Ju, Y.L. Liquefaction and distillation method for coal-bed methane with oxygen Chinese Patent No. 201010274504.4,Date:2012.05.23
32. Liu, Y.L. Xie, X. Zhu, R. Gu, Y. Ju, Y.L. Floating platform simulating apparatus with two freedom, Chinese Patent No. 200910052463.1,Date:2011.05.04
33. Xie, X. Liu, Y.L. Zhu, R. Ju, Y.L. Two freedom floating platform with adjustable amplitude, Chinese Patent No. 200910050466.4,Date:2011.04.20
34. Ju, Y. L. Gu, Y. et al. One freedom floating platform with adjustable amplitude, Chinese Patent No. 200810201923.8, Date: 2010.09.29
35. Ju, Y. L. Su, W. and Liu, H. X. A co-axial pulse tube refrigerator with integral cold finger fabricated by using wire electro-discharge, Chinese Patent, No. 200810039570.6, Date: 2010.06.29
36. Ju, Y. L. Su, W. and Liu, H. X. An integral cold finger with thread and gas flow slots for miniature co-axial pulse tube refrigerators, Chinese Patent, No. 200810039571.0, Date: 2010.01.27