Ice age initiation by an ocean-atmospheric circulation change in the Labrador Sea

被引:16
作者
Johnson, RG
机构
关键词
glaciation; global warming; climatic controls; thermohaline circulation;
D O I
10.1016/S0012-821X(97)89640-9
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The contrast between the large Greenland ice sheet and the nearly ice-free area of Canada to the west exemplifies the critical role of the moisture supply in glaciation. The trigger for new ice-sheet growth in Canada at the end of the last interglacial was probably an increase in the moisture supply rather than regional cooling. Triggering is attributed to stronger storm activity in the Labrador-Baffin area, caused by warming in the Labrador Sea and cooling in the Greenland-Norwegian Sea. The key to this temperature and circulation change may have been an increase in the hydrologic deficit of the Mediterranean Sea, A larger hydrologic deficit would have increased Mediterranean salinity and, consequently, the volume of Mediterranean Overflow Water. A resulting increased upwelling of Mediterranean Overflow Water from the lower thermocline off Scotland would have diverted additional warm North Atlantic Drift water westward via the Irminger Current, thus warming the Labrador Sea. The underlying cause of the hydrologic deficit increase was diminishing Milankovitch summer insolation in lower latitudes. This reduced African monsoon intensity and Nile River discharge. In modern times nearly all Nile discharge to the Mediterranean has been lost due to irrigation practices, culminating with the completion of the Aswan High Dam in 1968. The total increase in the hydrologic deficit due to Nile discharge loss is now 8%. In the next 70-100 years the Nile loss, added to larger evaporative losses due to CO2 warming, may increase the deficit as much as 22% above the inferred deficit at the beginning of the last glaciation thus further warming the Labrador Sea. Consequently, the triggering of major ice-sheet growth in Canada similar to 100 years from now is possible.
引用
收藏
页码:367 / 379
页数:13
相关论文
共 55 条
[1]   LATE QUATERNARY HISTORY OF THE NILE [J].
ADAMSON, DA ;
GASSE, F ;
STREET, FA ;
WILLIAMS, MAJ .
NATURE, 1980, 288 (5786) :50-55
[2]   LITTLE ICE AGE PERMANENT SNOWCOVER IN EASTERN CANADIAN ARCTIC - EXTENT MAPPED FROM LANDSAT-1 SATELLITE IMAGERY [J].
ANDREWS, JT ;
DAVIS, PT ;
WRIGHT, C .
GEOGRAFISKA ANNALER SERIES A-PHYSICAL GEOGRAPHY, 1976, 58 (1-2) :71-81
[3]   GROWTH-RATE OF LAURENTIDE ICE SHEET AND SEA-LEVEL LOWERING (WITH EMPHASIS ON 115,000 BP SEA-LEVEL LOW) [J].
ANDREWS, JT ;
MAHAFFY, MAW .
QUATERNARY RESEARCH, 1976, 6 (02) :167-183
[4]  
[Anonymous], 1985, QUATERNARY ENV E CAN
[5]  
ARKHIPOV SA, 1995, BOREAS, V24, P196
[6]   CONTINENTAL ICE SHEETS - CONDITIONS FOR GROWTH [J].
BARRY, RG ;
ANDREWS, JT ;
MAHAFFY, MA .
SCIENCE, 1975, 190 (4218) :979-981
[7]   THE GREENHOUSE-EFFECT [J].
BERGER, A ;
TRICOT, C .
SURVEYS IN GEOPHYSICS, 1992, 13 (06) :523-549
[8]   LONG-TERM VARIATIONS OF CALORIC INSOLATION RESULTING FROM EARTHS ORBITAL ELEMENTS [J].
BERGER, AL .
QUATERNARY RESEARCH, 1978, 9 (02) :139-167
[9]   STEADY 2-LAYER EXCHANGE THROUGH THE STRAIT OF GIBRALTAR [J].
BRYDEN, HL ;
KINDER, TH .
DEEP-SEA RESEARCH PART A-OCEANOGRAPHIC RESEARCH PAPERS, 1991, 38 :S445-S463
[10]   GLACIAL-INTERGLACIAL CHANGES IN MOISTURE SOURCES FOR GREENLAND - INFLUENCES ON THE ICE CORE RECORD OF CLIMATE [J].
CHARLES, CD ;
RIND, D ;
JOUZEL, J ;
KOSTER, RD ;
FAIRBANKS, RG .
SCIENCE, 1994, 263 (5146) :508-511