1 |
彭孝天, 王苏明, 王晨臣, 等. 直升机环境控制系统应用现状分析[J]. 海军航空工程学院学报, 2018, 33(2): 225-230.
|
|
Peng X T, Wang S M, Wang C C, et al. Analysis of application status of helicopter environmental control system [J]. Journal of Naval Aeronautical and Astronautical University, 2018, 33(2): 225-230.
|
2 |
张洋, 张文涛. 基于直升机环控系统的环境模拟系统研制[J]. 航天制造技术, 2018, (3): 35-37.
|
|
Zhang Y, Zhang W T. Development of environmental simulation system based on helicopter environmental control system [J]. Aerospace Manufacturing Technology, 2018, (3): 35-37.
|
3 |
Mavris D N, Bandte O, Delaurentis D A. Robust design simulation: a probabilistic approach to multidisciplinary design [J]. Journal of Aircraft, 1999, 36(1): 298-307
|
4 |
崔利, 薛浩. 直升机环控系统对比与展望[J]. 装备环境工程, 2010, (3): 62-65.
|
|
Cui L, Xue H. Comparison and prospect of helicopter environmental control system [J]. Equipment Environmental Engineering, 2010, (3): 62-65.
|
5 |
黄文捷. 直升机环控系统性能分析与研究[J]. 直升机技术, 2002, (1): 22-24.
|
|
Huang W J. Analysis and research on helicopter environmental control system performance [J]. Helicopter Technique, 2002, (1): 22-24.
|
6 |
陈婉莹, 李克清, 王顶忠, 等. 飞机环控系统供气温度、流量和湿度对座舱热负荷的影响[J]. 航空学报, 1999, 20(S1): S39-S41.
|
|
Chen W Y, Li K Q, Wang D Z, et al. Effect of supply air temperature, flow and humidity of cabin environmental control system on heat stress of cabin of fighter aircraft [J]. Acta Aeronautica et Astronautica Sinica, 1999, 20(S1): S39-S41.
|
7 |
唐有才, 王占勇, 孙金立. 现代军用飞机环境控制系统探讨[J]. 航空科学技术, 2002, (4): 35-37.
|
|
Tang Y C, Wang Z Y, Sun J L. Exploration of environment control system for modern military aircraft [J]. Aeronautical Science and Technology, 2002, (4): 35-37.
|
8 |
宋俊虓, 林贵平. 飞机环控系统引气分系统动态性能分析[J]. 北京航空航天大学学报, 1997, (5): 560-564.
|
|
Song J X, Lin G P. Transient performance of air-bleeding part of environmental control system [J]. Journal of Beijing University of Aeronautics and Astronautics, 1997, (5): 560-564.
|
9 |
党晓民, 李亦白. 多电飞机环控系统设计技术研究[C]//大型飞机关键技术高层论坛暨中国航空学会2007年学术年会论文集. 2007.
|
|
Dang X M, Li Y B. Research on design technology of environmental control system for multi-electric aircraft [C]// High-level Forum on Key Technologies of Large Aircraft and 2007 Annual Academic Conference of China Aviation Society. 2007.
|
10 |
孟繁鑫, 王瑞琪, 高赞军, 等. 多电飞机电动环境控制系统关键技术研究[J]. 航空科学技术, 2018, (2): 5-12.
|
|
Meng F X, Wang R Q, Gao Z J, et al. Research of key technology for the more electrical aircraft electric environmental control system [J]. Aeronautical Science and Technology, 2018, (2): 5-12.
|
11 |
陈圣斌, 周晓光, 黄建萍, 等. 人-机-环境系统工程技术与飞机/直升机驾驶舱设计[C]//大型飞机关键技术高层论坛暨中国航空学会学术年会. 2007.
|
|
Chen S B, Zhou X G, Huang J P,et al. Man-machine-environment system engineering and aircraft/helicopter cockpit design [C]// High-level Forum on Key Technologies of Large Aircraft and 2007 Annual Academic Conference of China Aviation Society. 2007.
|
12 |
Cai J Y, Li Z H, Ji J, et al. Performance analysis of novel air source hybrid solar assisted heat pump [J]. Renewable Energy, 2019, 139(8): 1133-1145.
|
13 |
Sun J B, Hyun S P, Sung J Y, et al. Study on the optimal heat supply control algorithm for district heating distribution network in response to outdoor air temperature [J]. Energy, 2015, 86: 247-256.
|
14 |
张洪生, 张学军. 直升机旋翼功率传递系数确定方法[J]. 海军航空工程学报, 2009, 21(2): 126-128.
|
|
Zhang H S, Zhang X J. Identification of helicopter rotor power transfer coefficient [J]. Journal of Naval Aeronautical and Astronautical University, 2009, 21(2): 126-128.
|
15 |
刘寅, 周光辉, 李安桂, 等. 太阳能辅助空气源热泵空调低温特性研究[J]. 低温与超导, 2009, 37(10): 73-75.
|
|
Liu Y, Zhou G H, Li A G, et al. Performance research of solar assistant air source heat pump in low temperature condition [J]. Cryogenics & Superconductivity, 2009, 37(10): 73-75.
|
16 |
刘忠民. 热泵空调器低温制热的探讨[J]. 制冷与空调, 2001, 1(1): 45-48.
|
|
Liu Z M. Discussion on low temperature heating of heat pump air conditioning [J]. Refrigeration and Air-conditioning, 2001, 1(1): 45-48.
|
17 |
王荣英, 周顺武, 闫巨盛, 等. 近30年青藏高原上空大气温度变化特征[J]. 高原山地气相研究, 2011, 31(1): 1-5.
|
|
Wang R Y, Zhou S W, Yan J S, et al. Analysis of temporal and spatial characteristics about upper-air temperature over Tibetan Plateau during last 30 years [J]. Plateau and Mountain Meteorology Research, 2011, 31(1): 1-5.
|
18 |
Donateo T, Carla A, Avanzini G. Fuel consumption of rotorcrafts and potentiality for hybrid electric power system [J]. Energy Conversion and Management, 2018, 164: 429-442.
|
19 |
Pang L P, Zhao M, Luo K, et al. Dynamic temperature prediction of electronic equipment under high altitude long endurance conditions [J]. Chinese Journal of Aeronautics, 2018, (31): 1189-1197.
|
20 |
Alyanak E J, Allison D L. Fuel thermal management system consideration in conceptual design sizing [C]// AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference. 2016.
|
21 |
Osprio J D, Rivera-Alvarez A, Girurugwiro P, et al. Integration of transparent insulation materials into solar collector devices [J]. Solar Energy, 2017, 147: 8-21.
|
22 |
Xu W, Ren D, Ye Q, et al. Simulations and experiments of laminar heat transfer for therminol heat transfer fluids in a rifled tube [J]. Applied Thermal Engineering, 2016, 102: 861-872
|
23 |
Nunes T K, Vargas J V C, Ordonez J C, et al. Modeling, simulation and optimization of a vapor compression refrigeration system dynamic and steady state response [J]. Applied Energy, 2015, 158: 540-555.
|
24 |
Gorgy E, Eckels S. Convective boiling of R-134a on enhanced-tube bundles [J]. International Journal of Refrigeration, 2016, 68: 145-160.
|
25 |
Park I, Lee H, Mudawar I. Determination of flow regimes and heat transfer coefficient for condensation in horizontal tubes [J]. International Journal of Heat and Mass transfer, 2015, 80: 698-716.
|
26 |
Lee H, Mudawar I, Hasan M M. Flow condensation in horizontal tubes [J]. International Journal of Heat & Mass Transfer, 2013, 66(11): 31-45.
|
27 |
Aounallah Y, Kenning D B R. Nucleate boiling and the Chen correlation for flow boiling heat transfer [J]. Experimental Heat Transfer, 1987, 1(2): 87-92.
|
28 |
Gorgy E, Eckels S. Convective boiling of R-134a on enhanced-tube bundles [J]. International Journal of Refrigeration, 2016, 68: 145-160.
|
29 |
Zajaczkowski B, Halon T, Krolicki Z. Experimental verification of heat transfer coefficient for nucleate boiling at sub-atmospheric pressure and small heat fluxes [J]. Heat and Mass Transfer, 2016, 52(2): 205-215.
|