Arid Zone Research ›› 2023, Vol. 40 ›› Issue (10): 1595-1607.doi: 10.13866/j.azr.2023.10.06
• Land and Water Resources • Previous Articles Next Articles
HE Jie1,2(),WANG Puyu1,2,3(),LI Hongliang1,2,LI Zhongqin1,2,3,ZHOU Ping1,MU Jianxin1,YU Fengchen3,DAI Yuping3
Received:
2023-02-20
Revised:
2023-04-28
Online:
2023-10-15
Published:
2023-11-01
HE Jie, WANG Puyu, LI Hongliang, LI Zhongqin, ZHOU Ping, MU Jianxin, YU Fengchen, DAI Yuping. Simulation study of summer ablation in the debris area of Qingbingtan Glacier No. 72 in Mt. Tomor[J].Arid Zone Research, 2023, 40(10): 1595-1607.
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Tab. 2
Mean fluxes and variation under different weather conditions"
净短波辐射/(W·m-2) | 净长波辐射/(W·m-2) | 感热通量/(W·m-2) | 潜热通量/(W·m-2) | 传导热通量/(W·m-2) | 降水热量/(W·m-2) | 消融量/(mm w.e.) | |
---|---|---|---|---|---|---|---|
所有天气 | 185.23 | -36.58 | -92.08 | -8.62 | -47.88 | -0.06 | 0.56 |
晴天 | 207.34 | -46.05 | -109.04 | -2.63 | -49.61 | 0 | 0.58 |
变化幅度 | 11.9% | -25.9% | -18.4% | 69.5% | -3.6% | - | 3.6% |
阴天 | 147.30 | -25.06 | -72.30 | -6.58 | -43.16 | -0.20 | 0.51 |
变化幅度 | -20.5% | 31.5% | 21.5% | 23.7% | 9.9% | -70.0% | -8.9% |
Tab. 3
Sensitivity analysis of debris parameters"
参数原始值 | 参数变化量 | 模拟消融量/(m w.e.) | 消融量变化百分比 |
---|---|---|---|
k=0.94 W·m-1·K-1 | +0.2 | 0.47 | 17.2% |
+0.4 | 0.53 | 33.1% | |
-0.2 | 0.33 | -18.4% | |
-0.4 | 0.25 | -38.3% | |
z0=0.016 m | +0.01 | 0.38 | -4.6% |
+0.02 | 0.37 | -7.7% | |
-0.01 | 0.44 | 9.3% | |
ε=0.94 | +0.03 | 0.38 | -4.2% |
+0.06 | 0.37 | -8.2% | |
-0.03 | 0.42 | 4.4% | |
-0.06 | 0.44 | 9.1% | |
α=0.086 | +0.1 | 0.38 | -5.6% |
+0.2 | 0.35 | -11.5% | |
-0.05 | 0.41 | 2.7% |
Tab. 4
Surface heat fluxes components of debris-covered glaciers in different regions"
青冰滩72号冰川 | 西琼台兰冰川 | 科其喀尔冰川 | 嘎隆拉冰川 | Miage冰川 | Lirung冰川 | 喀喇昆仑山 | |
---|---|---|---|---|---|---|---|
研究尺度 | 单点尺度 | 区域尺度 | |||||
经度 | 79°54' E | 80°17' E | 80°10' E | 95°43' E | 6°52' E | 85°33' E | 74°~77°E |
纬度 | 41°45' N | 41°45' N | 41°48' N | 29°45' N | 45°47' N | 28°13' N | 34°~37°N |
海拔/m | 3560~5986 | 3390~5800 | 3060~6342 | 3880~4800 | 1775~4800 | 4000~7132 | 3000~8000 |
面积/km2 | 5.74 | 107.1 | 83.6 | 2.7 | 11 | 6.3 | 18000 |
表碛厚度/m | 0.12 | - | 1.8 | 0.25 | 0.23 | - | 0.01~1.07 |
S/(W·m-2) | 185.2 | 146.7 | 98.0 | 201 | 219 | 176 | 131.8 |
L/(W·m-2) | -36.6 | -25.2 | -70 | -63.3 | -85.6 | ||
H/(W·m-2) | -92.1 | -15 | -43.5 | -87.1 | -75 | 11.3 | 4.3 |
LE/(W·m-2) | -8.6 | -54.7 | -44.0 | -25 | -14 | -1 | -13.6 |
G/(W·m-2) | - | - | - | - | -57 | - | 3 |
P/(W·m-2) | -0.1 | - | - | 0.1 | - | - | 0 |
M/(W·m-2) | 47.8 | 77 | 10.5 | 63.8 | 3 | 123 | 39.9 |
文献来源 | 本文 | [ | [ | [ | [ | [ | [ |
[1] | 施雅风. 2050年前气候变暖冰川萎缩对水资源影响情景预估[J]. 冰川冻土, 2001, 23(4): 333-341. |
[Shi Yafeng. Estimation of the water resources affected by climatic warming and glacier shrinkage before 2050 in West China[J]. Journal of Glaciology and Geocryology, 2001, 23(4): 333-341.] | |
[2] | 姚檀栋, 刘时银, 蒲健辰, 等. 高亚洲冰川的近期退缩及其对西北水资源的影响[J]. 中国科学: D辑地球科学, 2004, 34(6): 535-543. |
[Yao Tandong, Liu Shiyin, Pu Jianchen, et al. Recent recession of High Asian glaciers and their impacts on water resources in Northwest China[J]. Science in China:Series D Earth Sciences, 2004, 34(6): 535-543.] | |
[3] | Bates B, Kundzewicz Z W, Wu S, et al. Climate Change and Water:Technical Paper VI[M]. Intergovernmental Panel on Climate Change(IPCC), 2008. |
[4] | 刘时银, 张勇, 刘巧, 等. 气候变化对冰川影响与风险研究[M]. 北京: 科学出版社, 2017. |
[Liu Shiyin, Zhang Yong, Liu Qiao, et al. Study on the Impact of Climate change on Glacier and Its Risk[M]. Beijing: Science Press, 2017.] | |
[5] |
Östrem G. Ice melting under a thin layer of moraine, and the existence of ice cores in moraine ridges[J]. Geografiska Annaler, 1959, 41(4): 228-230.
doi: 10.1080/20014422.1959.11907953 |
[6] |
Nakawo M, Young G J. Field experiments to determine the effect of a debris layer on ablation of glacier ice[J]. Annals of Glaciology, 1981, 2: 85-91.
doi: 10.3189/172756481794352432 |
[7] |
Nicholson L, Benn D I. Calculating ice melt beneath a debris layer using meteorological data[J]. Journal of Glaciology, 2006, 52(178): 463-470.
doi: 10.3189/172756506781828584 |
[8] |
Evatt G W, Abrahams I D, Heil M, et al. Glacial melt under a porous debris layer[J]. Journal of Glaciology, 2015, 61(229): 825-836.
doi: 10.3189/2015JoG14J235 |
[9] |
Giese A, Boone A, Wagnon P, et al. Incorporating moisture content in surface energy balance modeling of a debris-covered glacier[J]. The Cryosphere, 2020, 14(5): 1555-1577.
doi: 10.5194/tc-14-1555-2020 |
[10] |
Rounce D R, Quincey D J, McKinney D C. Debris-covered glacier energy balance model for Imja-Lhotse Shar Glacier in the Everest region of Nepal[J]. The Cryosphere, 2015, 9(6): 2295-2310.
doi: 10.5194/tc-9-2295-2015 |
[11] |
Han Haidong, Wang Jian, Wei Junfeng, et al. Backwasting rate on debris-covered Koxkar glacier, Tuomuer mountain, China[J]. Journal of Glaciology, 2010, 56(196): 287-296.
doi: 10.3189/002214310791968430 |
[12] |
Yang Wei, Yao Tandong, Zhu Meilin, et al. Comparison of the meteorology and surface energy fluxes of debris-free and debris-covered glaciers in the southeastern Tibetan Plateau[J]. Journal of Glaciology, 2017, 63(242): 1090-1104.
doi: 10.1017/jog.2017.77 |
[13] |
Zhang Yong, Fujita K, Liu Shiyin, et al. Distribution of debris thickness and its effect on ice melt at Hailuogou Glacier, southeastern Tibetan Plateau, using in situ surveys and ASTER imagery[J]. Journal of Glaciology, 2011, 57(206): 1147-1157.
doi: 10.3189/002214311798843331 |
[14] |
张勇, 刘时银. 中国冰川区表碛厚度估算及其影响研究进展[J]. 地理学报, 2017, 72(9): 1606-1620.
doi: 10.11821/dlxb201709006 |
[Zhang Yong, Liu Shiyin. Research progress on debris thickness estimation and its effect on debris-covered glaciers in western China[J]. Acta Geographica Sinica, 2017, 72(9): 1606-1620.]
doi: 10.11821/dlxb201709006 |
|
[15] | 谢昌卫, 丁永建, 刘时银, 等. 托木尔峰南麓径流变化的气候因素分析[J]. 冰川冻土, 2005, 27(2): 269-275. |
[Xie Changwei, Ding Yongjian, Liu Shiyin, et al. Runoff change on the South slopes of Mount Tomur and its response to climatic variation[J]. Journal of Glaciology and Geocryology, 2005, 27(2): 269-275.] | |
[16] |
陈亚宁, 李稚, 范煜婷, 等. 西北干旱区气候变化对水文水资源影响研究进展[J]. 地理学报, 2014, 69(9): 1295-1304.
doi: 10.11821/dlxb201409005 |
[Chen Yaning, Li Zhi, Fan Yuting, et al. Research progress on the impact of climate change on water resources in the arid region of Northwest China[J]. Acta Geographica Sinica, 2014, 69(9): 1295-1304.]
doi: 10.11821/dlxb201409005 |
|
[17] | 施雅风. 简明中国冰川目录[M]. 上海: 上海科学普及出版社, 2005. |
[Shi Yafeng. China Concise Glacier Inventory[M]. Shanghai: Shanghai Popular Science Press, 2005.] | |
[18] | 中国科学院登山科学考察队. 天山托木尔峰地区的冰川与气象[M]. 乌鲁木齐: 新疆人民出版社, 1985. |
[Mountaineering Expedition of Chinese Academy of Science. Glaciers and Meteorology in the Tumor Region of the Tianshan Mountains[M]. Urumqi: Xinjiang People’s Press, 1985.] | |
[19] |
Aizen V B, Aizen E M, Melack J M. Precipitation, melt and runoff in the northern Tien Shan[J]. Journal of Hydrology, 1996, 186(1): 229-251.
doi: 10.1016/S0022-1694(96)03022-3 |
[20] | 李忠勤, 李开明, 王林. 新疆冰川近期变化及其对水资源的影响研究[J]. 第四纪研究, 2010, 30(1): 96-106. |
[Li Zhongqin, Li Kaiming, Wang Lin. Study on recent glacier changes and their impact on water resources in Xinjiang, North western China[J]. Quaternary Sciences, 2010, 30(1): 96-106.] | |
[21] |
王璞玉, 李忠勤, 曹敏, 等. 近45年来托木尔峰青冰滩72号冰川变化特征[J]. 地理科学, 2010, 30(6): 962-967.
doi: 10.13249/j.cnki.sgs.2010.06.962 |
[Wang Puyu, Li Zhongqin, Cao Min, et al. Variation of Qingbingtan Glacier No.72 in Mt. Tuomuer region during past 45 years[J]. Scientia Geographica Sinica, 2010, 30(6): 962-967.]
doi: 10.13249/j.cnki.sgs.2010.06.962 |
|
[22] |
Wang Puyu, Li Zhongqin, Wang Wenbin, et al. Changes of six selected glaciers in the Tomor region, Tian Shan, Central Asia, over the past- 50 years, using high-resolution remote sensing images and field surveying[J]. Quaternary International, 2013, 311: 123-131.
doi: 10.1016/j.quaint.2013.04.031 |
[23] |
Wang Puyu, Li Zhongqin, Li Huilin, et al. Characteristics of a partially debris-covered glacier and its response to atmospheric warming in Mt. Tomor, Tien Shan, China[J]. Global and Planetary Change, 2017, 159: 11-24.
doi: 10.1016/j.gloplacha.2017.10.006 |
[24] | 车彦军, 张明军, 李忠勤, 等. 2008—2014年青冰滩72号冰川消融特征分析[J]. 冰川冻土, 2020, 42(2): 318-331. |
[Che Yanjun, Zhang Mingjun, Li Zhongqin, et al. Understanding the mass balance characteristics of Qingbingtan Glacier No.72 during the period of 2008-2014[J]. Journal of Glaciology and Geocryology, 2020, 42(2): 318-331.] | |
[25] |
Wang Puyu, Li Zhongqin, Li Huilin, et al. Ice surface-elevation change and velocity of Qingbingtan glacier No. 72 in the Tomor region, Tianshan Mountains, Central Asia[J]. Journal of Mountain Science, 2011, 8(6): 855-864.
doi: 10.1007/s11629-011-1018-x |
[26] | 曹敏, 李忠勤, 李慧林. 天山托木尔峰地区青冰滩72号冰川表面运动速度特征研究[J]. 冰川冻土, 2011, 33(1): 21-29. |
[Cao Min, Li Zhongqin, Li Huilin. Features of surface flow velocity on the Qingbingtan Glacier No. 72, Tianshan Mountains[J]. Journal of Glaciology and Geocryology, 2011, 33(1): 21-29.] | |
[27] |
Van Den Broeke M, Reijmer C, Van As D, et al. Daily cycle of the surface energy balance in Antarctica and the influence of clouds[J]. International Journal of Climatology, 2006, 26(12): 1587-1605.
doi: 10.1002/joc.v26:12 |
[28] |
Reid T D, Brock B W. An energy-balance model for debris-covered glaciers including heat conduction through the debris layer[J]. Journal of Glaciology, 2010, 56(199): 903-916.
doi: 10.3189/002214310794457218 |
[29] | Brock B W, Mihalcea C, Kirkbride M P, et al. Meteorology and surface energy fluxes in the 2005-2007 ablation seasons at the Miage debris-covered glacier, Mont Blanc Massif, Italian Alps[J]. Journal of Geophysical Research: Atmospheres, 2010, 115(D9106): 1-16. |
[30] | Strasser U, Corripio J, Pellicciotti F, et al. Spatial and temporal variability of meteorological variables at Haut Glacier d’Arolla (Switzerland) during the ablation season 2001: Measurements and simulations[J]. Journal of Geophysical Research: Atmospheres, 2004, 109(D03103): 1-18. |
[31] |
Idso S B. A set of equations for full spectrum and 8-to 14-μm and 10.5-to 12.5-μm thermal radiation from cloudless skies[J]. Water Resources Research, 1981, 17(2): 295-304.
doi: 10.1029/WR017i002p00295 |
[32] | Unsworth M H, Monteith J L. Long-wave radiation at the ground I. Angular distribution of incoming radiation[J]. Quarterly Journal of the Royal Meteorological Society, 1975, 101(427): 13-24. |
[33] | Brutsaert W. Evaporation into the Atmosphere: Theory, History and Applications[M]. New York: Springer, 1982. |
[34] | 方潇雨, 李忠勤, Bernd Wuennemann, 等. 冰川消融模式及其对比研究——以祁连山黑河流域十一冰川研究为例[J]. 冰川冻土, 2015, 37(2): 336-350. |
[Fang Xiaoyu, Li Zhongqin, Bernd Wuennemann, et al. Physical energy-balance and statistical glacier melting models comparison and testing for Shiyi Glacier, Heihe River Basin, Qilian Mountains, China[J]. Journal of Glaciology and Geocryology, 2015, 37(2): 336-350.] | |
[35] | Oke T R. Boundary Layer Climates[M]. 2nd ed. New York: Routledge, 1987. |
[36] |
Moore R D. On the use of bulk aerodynamic formulae over melting snow[J]. Hydrology Research, 1983, 14(4): 193-206.
doi: 10.2166/nh.1983.0016 |
[37] | 谢自楚, 刘潮海. 冰川学导论[M]. 上海: 上海科学普及出版社, 2010. |
[Xie Zichu, Liu Chaohai. Introduction to Glaciology[M]. Shangha: Shanghai Science Popularization Press, 2010.] | |
[38] |
怀保娟, 李忠勤, 孙美平, 等. 近40 a来天山台兰河流域冰川资源变化分析[J]. 地理科学, 2014, 34(2): 229-236.
doi: 10.13249/j.cnki.sgs.2014.02.229 |
[Huai Baojuan, Li Zhongqin, Sun Meiping, et al. Glaciers change in the Tailan River watershed in the last 40 years[J]. Scientia Geographica Sinica, 2014, 34(2): 229-236.]
doi: 10.13249/j.cnki.sgs.2014.02.229 |
|
[39] | 寇有观, 丁良福, 李文忠, 等. 托木尔峰地区的冰川气象[J]. 冰川冻土, 1980, 2(4) : 11-14. |
[Kou Youguan, Ding Liangfu, Li Wenzhong, et al. Glacial meteorology on Mt. Tuomuer[J]. Journal of Glaciology and Geocryology, 1980, 2(4): 11-14.] | |
[40] | 韩海东, 刘时银, 丁永健, 等. 科其喀尔巴西冰川的近地层基本气象特征[J]. 冰川冻土, 2008, 30(6): 967-975. |
[Han Haidong, Liu Shiyin, Ding Yongjian, et al. Near-surface meteorological characteristics on the Koxkar Baxi Glacier, Tianshan[J]. Journal of Glaciology and Geocryology, 2008, 30(6): 967-975.] | |
[41] | 韩海东, 丁永建, 刘时银. 科奇喀尔冰川夏季表碛区热量平衡参数的估算分析[J]. 冰川冻土, 2005, 27(1): 88-94. |
[Han Haidong, Ding Yongjian, Liu Shiyin. Estimation and analysis of heat balance parameters in the ablation season of debris-covered Kerqikaer Glacier, Tianshan Mountains[J]. Journal of Glaciology and Geocryology, 2005, 27(1): 88-94.] | |
[42] |
Steiner J F, Pellicciotti F, Buri P, et al. Modelling ice-cliff backwasting on a debris-covered glacier in the Nepalese Himalaya[J]. Journal of Glaciology, 2015, 61(229): 889-907.
doi: 10.3189/2015JoG14J194 |
[43] |
Collier E, Maussion F, Nicholson L I, et al. Impact of debris cover on glacier ablation and atmosphere-glacier feedbacks in the Karakoram[J]. The Cryosphere, 2015, 9(4): 1617-1632.
doi: 10.5194/tc-9-1617-2015 |
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