ON THE STRUCTURE AND ORIGIN OF MAJOR GLACIATION CYCLES .2. THE 100,000-YEAR CYCLE

被引:711
作者
IMBRIE, J
BERGER, A
BOYLE, EA
CLEMENS, SC
DUFFY, A
HOWARD, WR
KUKLA, G
KUTZBACH, J
MARTINSON, DG
MCINTYRE, A
MIX, AC
MOLFINO, B
MORLEY, JJ
PETERSON, LC
PISIAS, NG
PRELL, WL
RAYMO, ME
SHACKLETON, NJ
TOGGWEILER, JR
机构
[1] UNIV CATHOLIQUE LOUVAIN,INST ASTRON & GEOPHYS G LEMAITRE,B-1348 LOUVAIN,BELGIUM
[2] MIT,DEPT EARTH ATMOSPHER & PLANETARY SCI,CAMBRIDGE,MA 02139
[3] COLUMBIA UNIV,LAMONT DOHERTY GEOL OBSERV,PALISADES,NY 10964
[4] UNIV WISCONSIN,CTR CLIMAT RES & SPACE SCI,MADISON,WI 53706
[5] OREGON STATE UNIV,COLL OCEANOG,CORVALLIS,OR 97331
[6] UNIV MIAMI,ROSENSTIEL SCH MARINE & ATMOSPHER SCI,MIAMI,FL 33149
[7] CUNY QUEENS COLL,DEPT GEOL,FLUSHING,NY
[8] GODWIN LAB QUATERNARY RES,CAMBRIDGE CB2 3RS,CAMBS,ENGLAND
[9] NOAA,GEOPHYS FLUID DYNAM LAB,PRINCETON,NJ 08542
来源
PALEOCEANOGRAPHY | 1993年 / 8卷 / 06期
关键词
D O I
10.1029/93PA02751
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Climate over the past million years has been dominated by glaciation cycles with periods near 23,000, 41,000, and 100,000 years. In a linear version of the Milankovitch theory, the two shorter cycles can be explained as responses to insolation cycles driven by precession and obliquity. But the 100,000-year radiation cycle (arising from eccentricity variation) is much too small in amplitude and too late in phase to produce the corresponding climate cycle by direct forcing. We present phase observations showing that the geographic progression of local responses over the 100,000-year cycle is similar to the progression in the other two cycles, implying that a similar set of internal climatic mechanisms operates in all three. But the phase sequence in the 100,000-year cycle requires a source of climatic inertia having a time constant (similar to 15,000 years) much larger than the other cycles (similar to 5,000 years). Our conceptual model identifies massive northern hemisphere ice sheets as this larger inertial source. When these ice sheets, forced by precession and obliquity, exceed a critical size, they cease responding as linear Milankovitch slaves and drive atmospheric and oceanic responses that mimic the externally forced responses. In our model, the coupled system acts as a nonlinear amplifier that is particularly sensitive to eccentricity-driven modulations in the 23,000-year sea level cycle. During an interval when sea level is forced upward from a major low stand by a Milankovitch response acting either alone or in combination with an internally driven, higher-frequency process, ice sheets grounded on continental shelves become unstable, mass wasting accelerates, and the resulting deglaciation sets the phase of one wave in the train of 100,000-year oscillations. Whether a glacier or ice sheet influences the climate depends very much on the scale....The interesting aspect is that an effect on the local climate can still make an ice mass grow larger and larger, thereby gradually increasing its radius of influence.
引用
收藏
页码:699 / 735
页数:37
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