[1] |
PÖRTNER H O, ROBERTS D C, MASSON-DELMOTTE V, et al. IPCC special report on the ocean and cryosphere in a changing climate[M]. Cambridge: Cambridge University Press, 2019.
|
[2] |
BRYAN K, SCHROEDER E. Seasonal heat storage in the North Atlantic Ocean[J]. Journal of Meteorology, 1960, 17(6): 670-674.
|
[3] |
LEVITUS S. Annual cycle of temperature and heat storage in the world ocean[J]. Journal of Physical Oceanography, 1984, 14(4): 727-746.
|
[4] |
LEVITUS S, ANTONOV J I, BOYER T P, et al. Warming of the world ocean[J]. Science, 2000, 287(5461): 2225-2229.
|
[5] |
GILLE S T. Decadal-scale temperature trends in the southern hemisphere ocean[J]. Journal of Climate, 2008, 21(18): 4749-4765.
|
[6] |
LEVITUS S, ANTONOV J I, BOYER T P, et al. World ocean heat content and thermosteric sea level change (0-2000m), 1955—2010[J]. Geophysical Research Letters, 2012, 39(10): L10603.
|
[7] |
CHENG L J, TRENBERTH K E, FASULLO J, et al. Improved estimates of ocean heat content from 1960 to 2015[J]. Science Advances, 2017, 3(3): e1601545.
|
[8] |
SU H, WEI Y N, LU W F, et al. Unabated global ocean warming revealed by ocean heat content from remote sensing reconstruction[J]. Remote Sensing, 2023, 15(3): 566.
|
[9] |
CHENG L J, VON SCHUCKMANN K, ABRAHAM J P, et al. Past and future ocean warming[J]. Nature Reviews Earth & Environment, 2022, 3: 776-794.
|
[10] |
WILLIS J K, ROEMMICH D, CORNUELLE B. Interannual variability in upper ocean heat content, temperature, and thermosteric expansion on global scales[J]. Journal of Geophysical Research: Oceans, 2004, 109(C12): C12036.
|
[11] |
CHENG L J, TRENBERTH K E, FASULLO J T, et al. Evolution of ocean heat content related to ENSO[J]. Journal of Climate, 2019, 32(12): 3529-3556.
|
[12] |
ISHII M, FUKUDA Y, HIRAHARA S, et al. Accuracy of global upper ocean heat content estimation expected from present observational data sets[J]. SOLA, 2017, 13: 163-167.
|
[13] |
ROEMMICH D, JOHNSON G C, RISER S, et al. The Argo program: Observing the global oceans with profiling floats[J]. Oceanography, 2009, 22(2): 34-43.
|
[14] |
LIU Z H, XING X G, CHEN Z H, et al. Twenty years of ocean observations with China Argo[J]. Acta Oceanologica Sinica, 2023, 42(2): 1-16.
|
[15] |
DOMINGUES C M, CHURCH J A, WHITE N J, et al. Improved estimates of upper-ocean warming and multi-decadal sea-level rise[J]. Nature, 2008, 453: 1090-1093.
|
[16] |
YU X R, MCPHADEN M J. Seasonal variability in the equatorial Pacific[J]. Journal of Physical Oceanography, 1999, 29(5): 925-947.
|
[17] |
YANG L N, MURTUGUDDE R, ZHOU L, et al. A potential link between the Southern Ocean warming and the South Indian Ocean heat balance[J]. Journal of Geophysical Research: Oceans, 2020, 125(12): e2020JC016132.
|
[18] |
CHENG L J, ABRAHAM J, GONI G, et al. XBT science: Assessment of instrumental biases and errors[J]. Bulletin of the American Meteorological Society, 2016, 97(6): 924-933.
|
[19] |
EYRING V, BONY S, MEEHL G A, et al. Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization[J]. Geoscientific Model Development, 2016, 9(5): 1937-1958.
|
[20] |
ZHANG C L, WANG D Y, LIU Z H, et al. Global gridded Argo dataset based on gradient-dependent optimal interpo-lation[J]. Journal of Marine Science and Engineering, 2022, 10: 650.
|
[21] |
ZHANG C L, XU J P, BAO X W, et al. An effective method for improving the accuracy of Argo objective analysis[J]. Acta Oceanologica Sinica, 2013, 32(7): 66-77.
|
[22] |
张春玲, 许建平, 鲍献文. 基于Argo资料的梯度依赖相关尺度方法[J]. 解放军理工大学学报:自然科学版, 2015, 16(5):476-483.
|
|
ZHANG C L, XU J P, BAO X W. Gradient-dependent correlation scale method based on Argo[J]. Journal of PLA University of Science and Technology: Natural Science Edition, 2015, 16(5): 476-483.
|
[23] |
ZHANG C L, WANG Z F, LIU Y. An Argo-based experiment providing near-real-time subsurface oceanic environmental information for fishery data[J]. Fisheries Oceanography, 2021, 30(1): 85-98.
|
[24] |
CHU P C, FAN C W. Maximum angle method for determi-ning mixed layer depth from seaglider data[J]. Journal of Oceanography, 2011, 67(2): 219-230.
|
[25] |
LIANG X F, LIU C, PONTE R M, et al. A comparison of the variability and changes in global ocean heat content from multiple objective analysis products during the Argo period[J]. Journal of Climate, 2021, 34: 7875-7895.
|
[26] |
邓绍坤, 吴祥柏. 基于再分析数据的南大西洋上层海洋热含量变化研究[J]. 海洋学研究, 2019, 37(3):12-20.
|
|
DENG S K, WU X B. Upper-layer ocean heat content variability in the Southern Atlantic from reanalysis data[J]. Journal of Marine Sciences, 2019, 37(3): 12-20.
|
[27] |
ROBERTS C D, PALMER M D, ALLAN R P, et al. Surface flux and ocean heat transport convergence contri-butions to seasonal and interannual variations of ocean heat content[J]. Journal of Geophysical Research: Oceans, 2017, 122(1): 726-744.
|
[28] |
REYNOLDS R W, SMITH T M. A high-resolution global sea surface temperature climatology[J]. Journal of Climate, 1995, 8(6): 1571-1583.
|
[29] |
CHENG L J, ABRAHAM J, TRENBERTH K E, et al. Another record: Ocean warming continues through 2021 despite La Niña conditions[J]. Advances in Atmospheric Sciences, 2022, 39(3): 373-385.
|
[30] |
LI C Y, HUANG J P, HE Y L, et al. Atmospheric warming slowdown during 1998—2013 associated with increasing ocean heat content[J]. Advances in Atmospheric Sciences, 2019, 36(11): 1188-1202.
|
[31] |
蒋佳茗, 汪亦蕾. 热带西北太平洋0-300 m热含量的年代际变化[J]. 海洋学研究, 2022, 40(1):1-11.
|
|
JIANG J M, WANG Y L. Interdecadal variation of ocean heat content at depth of 0-300 m in the tropical northwest Pacific[J]. Journal of Marine Sciences, 2022, 40(1): 1-11.
|
[32] |
SU H, JIANG J W, WANG A, et al. Subsurface tempe-rature reconstruction for the global ocean from 1993 to 2020 using satellite observations and deep learning[J]. Remote Sensing, 2022, 14(13): 3198.
|
[33] |
DESBRUYÈRES D G, PURKEY S G, MCDONAGH E L, et al. Deep and abyssal ocean warming from 35 years of repeat hydrography[J]. Geophysical Research Letters, 2016, 43(19): 10356-10365.
|
[34] |
CHEN X Y, TUNG K K. Varying planetary heat sink led to global-warming slowdown and acceleration[J]. Science, 2014, 345(6199): 897-903.
|
[35] |
李宁, 王晓春. 赤道太平洋海域上层海洋热含量及其变化机制的诊断分析[J]. 热带海洋学报, 2019, 38(1):1-10.
|
|
LI N, WANG X C. Diagnostic analysis of upper-ocean heat content change in the equatorial Pacific and related mechanism[J]. Journal of Tropical Oceanography, 2019, 38(1): 1-10.
|
[36] |
MAYER M, BALMASEDA M A, HAIMBERGER L. Unprecedented 2015/2016 indo-pacific heat transfer speeds up tropical Pacific heat recharge[J]. Geophysical Research Letters, 2018, 45(7): 3274-3284.
|
[37] |
吴晓芬, 许建平. 海洋上层热含量的分布特征、变化模态及观测手段综述[J]. 海洋学研究, 2010, 28(1):46-54.
|
|
WU X F, XU J P. A summary of upper ocean heat content in the tropical westen Pacific Ocean and its distribution features, variation patterns and observations[J]. Journal of Marine Sciences, 2010, 28(1): 46-54.
|
[38] |
钱浩, 张启龙. 热带太平洋—印度洋热含量变异及其与表层水温的关系[J]. 海洋科学进展, 2013, 31(1):1-11.
|
|
QIAN H, ZHANG Q L. Variations of heat content in the tropical pacific-indian ocean and their relations to the sea surface temperature[J]. Advances in Marine Science, 2013, 31(1): 1-11.
|
[39] |
黄科, 张启龙. 热带印度洋上层热含量异常场的年际变率分析[J]. 海洋科学进展, 2011, 29(3):265-274.
|
|
HUANG K, ZHANG Q L. Analysis for interannual variability of heat content anomaly in the upper tropical Indian Ocean[J]. Advances in Marine Science, 2011, 29(3): 265-274.
|
[40] |
ZHANG L, HAN W Q, LI Y L, et al. Variability of sea level and upper-ocean heat content in the Indian Ocean: Effects of subtropical Indian Ocean Dipole and ENSO[J]. Journal of Climate, 2019, 32(21): 7227-7245.
|
[41] |
JOHNSON G C, LYMAN J M, LOEB N G. Improving estimates of Earth’s energy imbalance[J]. Nature Climate Change, 2016, 6: 639-640.
|