参考文献/References:
[1] 郭青林. 敦煌莫高窟壁画病害水盐来源研究[D]. 兰州: 兰州大学, 2009.
GUO Qinglin. Origin of water and salts responsible for wall paintings disease at Dunhuang Mogao Grottoes[D]. Lanzhou: Lanzhou University, 2009.
[2] 王江丽, 闫增峰, 王旭东, 等. 敦煌莫高窟洞窟自然通风实验研究[J]. 西安建筑科技大学学报(自然科学版), 2015, 47(5): 712-716.
WANG Jiangli, YAN Zengfeng, WANG Xudong, et al. Research and test on natural ventilation of the Mogao Grottoes in Dunhuang[J]. Xi’an University of science and technology (natural science edition), 2015, 47(5): 712-716.
[3] 王江丽, 闫增峰, 王旭东, 等. 莫高窟洞窟自然通风测试研究[J]. 敦煌研究, 2015, 8: 30-35.
WANG Jiangli, YAN Zengfeng, WANG Xudong, et al. Research and test on natural ventilation of the Mogao Grottoes[J]. Dunhuang Research, 2015, 8: 30-35.
[4] 王江丽, 闫增峰. 强降雨天气下的莫高窟洞窟环境调控方案初步研究[J]. 建筑与文化, 2014, (3): 62-65.
WANG Jiangli, YAN Zengfeng. The environmental control equipment system of the Mogao Caves under heavy rainfall[J]. Architecture and Culture, 2014(3): 62-65.
[5] 尚瑞华, 闫增峰, 王江丽. 敦煌莫高窟区景观微气候调节技术研究[J]. 云南建筑, 2014, 11: 296-299.
SHANG Ruihua, YAN Zengfeng, WANG Jiangli. Research on landscape micro-climate regulation technology of Mogao Grottoes in Dunhuang[J]. Yunnan Architecture, 2014, 11: 296-299.
[6] 李哲伟. 莫高窟洞窟前室对窟内热湿环境调控机理研究[D]. 西安: 西安建筑科技大学, 2014.
LI Zhewei. Study on the atria regulatory mechanism of thermal and moisture environment in the Mogao Grottoes[D]. Xi’an University of Science and Technology, 2014.
[7] 张正模, 刘洪丽, 郭青林, 等. 突发性强降雨对莫高窟洞窟微环境影响分析[J]. 敦煌研究, 2013, (1): 120-124.
ZHANG Zhengmo, LIU Hongli, GUO Qinglin, et al. Analysis of the impact of sudden heavy rainfall on the mocro-environment of the caves at Mogao[J]. Dunhuang Research, 2013, (1): 120-124.
[8] 李最雄. 敦煌石窟的保护现状和面临的任务[J]. 敦煌研究, 2000, 63(1): 10-23.
LI Zuixiong. The status quo and facing task for protection of Dunhuang Grottoes[J]. Dunhuang Research, 2000, 63(1):10-23.
[9] 张伟民. 金字塔沙丘形成发育的动力学过程研究——以敦煌莫高窟为例[D]. 北京: 中国科学院研究生院, 2005.
ZHANG Weimin. Dynamics process research on the pyramid dune: case study on Mogao Grottoes in Dunhuang[D]. Beijing: Graduate School of Chinese Sciences Academy.
[10] 汪万福, 王 涛, 李最雄, 等. 敦煌莫高窟崖顶灌木林带防风固沙效应[J]. 生态学报, 2004, 24(11): 2492-2500.
WANG Wanfu, WANG Tao, LI Zuixiong, et al. The effects of blown sand on the shrub belt over the top of the Mogao Grottoes. ACTA ECOLOGICA SINICA, 2004, 24(11): 2492-2500.
[11] SHANG Ruihua, YAN Zengfeng, WANG Xudong, et al. Research on the Wind Environment of the Landscape Forest Belts in Front of Dunhuang Mogao Grottoes[J]. Gummi, Fasern, Kunststoffe, 2016(17): 752-760.
[12] WANG Jiangli, YAN Zengfeng, WANG Xudong, et al. Experimental research on mechanical ventilation system for Cave 328 in Mogao Grottoes, Dunhuang, China [J]. Energy and Buildings, 2016,09: 692-696.
[13] De Gids, W. and Phaff, H. Ventilation rates and energy consumption due to open windows-a brief overview of research in the Netherlands[J]. Air Infiltration Rev.. 1982, 4(1): 4-5.
[14] 李红寿, 汪万福, 张国彬, 等. 地形地貌对莫高窟区域微环境的影响[J]. 敦煌研究, 2008, (3): 98-102.
LI Hongshou, WANG Wanfu, ZHANG Guobin, et al. The influence of landform to micro-environment on Mogao Grottoes[J]. Dunhuang Research, 2008(3): 98-102.
[15] 汪万福, 安黎哲, 冯虎元, 等. 敦煌莫高窟窟前林带防护效应的风洞实验[J]. 中国沙漠, 2009, 29(3): 383-390.
WANG Wanfu, AN Lizhe, FENG Huyuan, et al. Wind tunnel experiment for protective effect of front belt of Mogao Grottoes in Dunhuang[J]. Chinese Desert, 2009, 29(3):383-390.
[16] 任昱, 王志刚, 杨东慧. 林带冬季相疏透度与透风系数的换算[J]. 林业科学, 2013, 49(11): 83-88.
REN Yu, WANG Zhigang, YANG Donghui. Conversion of porosity and permeability of shelter belts with winter facies[J]. Scientia Silvae Sinicae, 2013, 49(11): 83-88.
[17] 张丽, 李建平. 风向变化特征在季风模拟评估中的应用[J]. 大气科学, 2008, 32(1):53-66.
ZHANG Li, LI Jianping. The application of the variation characteristics of wind direction in evaluating monsoon simulation[J]. Chinese Journal of Atomospheric Sciences, 2008, 32(1): 53-66.
[18] 陈仰金. 大型高层住区规划建设中的问题及对策研究——以济南市为例[D]. 山东: 山东建筑大学, 2010.
CHEN Yangjin. The study of the question and countermeasure about the great high-rise residential districts-a case study of Jinan[D]. Shandong: Shandong Architecture University, 2010.
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