CIESC Journal ›› 2020, Vol. 71 ›› Issue (S1): 335-340.DOI: 10.11949/0438-1157.20191102
• Process system engineering • Previous Articles Next Articles
Received:
2019-10-07
Revised:
2019-12-27
Online:
2020-04-25
Published:
2020-04-25
Contact:
Liping PANG
通讯作者:
庞丽萍
作者简介:
徐刚(1984—),男,博士,高级工程师,CLC Number:
Gang XU, Liping PANG. Simulation and optimization of air supply system layout for special vehicle cabin[J]. CIESC Journal, 2020, 71(S1): 335-340.
徐刚, 庞丽萍. 特种车辆舱室送风系统布局仿真优化[J]. 化工学报, 2020, 71(S1): 335-340.
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风口 | Y轴/cm | Z轴/cm |
---|---|---|
inlet1 | 150~600(L1) | 700~850(L2) |
inlet2 | 350~700(L3) | 700~850(L4) |
inlet4 | 150~350(L5) |
Table 1 Range of tuyere position parameters
风口 | Y轴/cm | Z轴/cm |
---|---|---|
inlet1 | 150~600(L1) | 700~850(L2) |
inlet2 | 350~700(L3) | 700~850(L4) |
inlet4 | 150~350(L5) |
1 | 周翔, 朱颖心, 欧阳沁, 等. 环境控制能力对人体热感觉影响的实验研究[J]. 建筑科学, 2010, 26(10): 177-180. |
Zhou X, Zhu Y X, Ouyang Q, et al. Experimental study on the effect of environmental control ability on human thermal perception [J]. Building Science, 2010, 26(10): 177-180. | |
2 | Dygert R K, Dang T Q. Experiment validation of local exhaust strategies for improved IAQ in aircraft cabins [J]. Building Environ., 2012, 47(1): 76-88. |
3 | Pang L P, Zhang J, Wanyan X R, et al. Field study of neutrality cabin temperature for Chinese passenger in economy class of civil aircraft [J]. Journal of Thermal Biology, 2018, 78: 312-319. |
4 | International Organization for Standardization. ISO 7730: 2005 Ergonomics of the thermal environment-Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria [S]. Geneva: ISO, 2005. |
5 | ANSI/ASHRAE Standard 55-2010. Thermal Environmental Conditions for Human Occupancy [S]. Atlanta: American Society of Heating Refrigerating and Air conditioning Engineers, 2010. |
6 | Pang L P, Qin Y, Liu D, et al. Thermal comfort assessment in civil aircraft cabins [J]. Chinese Journal of Aeronautics, 2014, 27(2): 210-216. |
7 | Liu W, Duan R, Chen C, et al. Inverse design of the thermal environment in an airliner cabin by use of the CFD-based adjoint method [J]. Energy and Buildings, 2015, 104: 147-155. |
8 | Liu D, Pang L P, Liu M, et al. Experiment evaluation and simulation optimization of air distribution mode for underwater cabin [J]. Applied Thermal Engineering, 2016, 106: 1282-1289. |
9 | Kabanshi A, Yang B, et al. Occupants perception of air movements and air quality in a simulated classroom with an intermittent air supply system [J]. Indoor and Built Environment, 2019, 28(1): 63-76. |
10 | Dietmar S, Fabian O, Wolfgang F. Novel speed-controlled exhaust-air to supply-air heat pump combined with a ventilation system [J]. Applied Thermal Engineering, 2019: 114230. |
11 | Fang Z S, Liu H, Li B Z, et al. Investigation of thermal comfort and the nozzle usage behaviour in aircraft cabins [J]. Indoor and Built Environment, 2019, 28(1): 118-131. |
12 | Zhang S, He W P, Chen D K, et al. Thermal comfort analysis based on PMV/PPD in cabins of manned aubmersibles [J]. Building and Environment, 2019, 148: 0360-1323. |
13 | James B, Diana H, Elena G, et al. Reinforcement learning-based thermal comfort control for vehicle cabins [J]. Mechatronics, 2018, 50: 413-421. |
14 | Liu H M, Lian Z W, Gong Z H, et al. Thermal comfort, vibration, and noise in Chinese ship cabin environment in winter time [J]. Building and Environment, 2018, 135: 104-111. |
15 | Zhang T, Yin S, Wang S. An under-aisle air distribution system facilitating humidification of commercial aircraft cabins [J]. Building Environment, 2010, 45: 907-917. |
16 | Yin H S, Shen X, Huang Y, et al. Modeling dynamic responses of aircraft environmental control systems by coupling with cabin thermal environment simulations [J]. Building Simulation, 2016, 9(4): 459-468. |
17 | Shah S, Liu G, Greatrix D R. Modelling, simulation and experimental evaluation of a crossflow heat exchanger for an aircraft environmental control system [J]. Proceedings of the Institution of Mechanical Engineers, 2010, 224(5): 613-623. |
18 | Leo T J, Perez-Grande I. A thermoeconomic analysis of a commercial aircraft environmental control system [J]. Applied Thermal Engineering, 2005, 25(2/3): 309-325. |
19 | Yuan W X, Li Y X, et al. Comparison study of membrane dehumidification aircraft environmental control systems [J]. Journal of Aircraft, 2012, 49(3): 815-821. |
20 | Schlabe D, Lienig J. Model-based thermal management functions for aircraft systems [C]// SAE 2014 Aerospace Systems and Technology Conference, SAE International. 2014: 2203. |
21 | Maier J, Marggraf-Micheel C, Zinn F, et al. Ceiling-based cabin displacement ventilation in an aircraft passenger cabin: analysis of thermal comfort [J]. Building Environment, 2018, 146: 29-36. |
22 | Wu Y, Liu H, Li B, et al. Thermal comfort criteria for personal air supply in aircraft cabins in winter [J]. Building and Environment, 2017, 125: 373-382. |
23 | Danca P, Bode F, Nastase L. CFD simulation of a cabin thermal environment with and without human body – thermal comfort evaluation [J]. E3S Web of Conferences, 2018, 32: 1018. |
24 | Maier J, Marggraf-Micheel C. Thermal comfort of different displacement ventilation systems in an aircraft passenger cabin [J]. Building Environment, 2017, 111: 256-264. |
25 | Liu Z Y, Chen J, Chen H, et al. Air supply regulation for PEMFC systems based on uncertainty and disturbance estimation [J]. International Journal of Hydrogen Energy, 2018, 43(25): 11559-11567. |
26 | Gao Z, Wang Q, Hu H W, et al. Effect of air supply mode on indoor air quality using fresh air system [J]. MATEC Web of Conferences, 2018, 175: 4014. |
27 | Cui W, Wu T, Ouyang Q, et al. Passenger thermal comfort and behavior: a field investigation in commercial aircraft cabins [J]. Indoor Air, 2016, 27: 94-107. |
28 | Sadrrizadeh S. Numerical investigation of thermal comfort in an aircraft passenger cabin [J]. E3S Web of Conferences, 2019, 111: 01027. |
29 | Du X Y, Li B Z, Liu H, et al. The appropriate airflow rate for a nozzle in commercial aircraft cabins based on thermal comfort experiments [J]. Building and Environment, 2017, 112: 132-143. |
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