ADVANCES IN NEW-ZEALAND OCEANOGRAPHY, 1967-91

被引:22
作者
BRADFORDGRIEVE, JM
LEWIS, KB
STANTON, BR
机构
[1] New Zealand Oceanographic Institute, DSIR Marine and Freshwater, Department of Scientific and Industrial Research, Wellington
关键词
OCEANOGRAPHY; CURRENTS; TIDES; GEOLOGY; SEDIMENTS; PLATE TECTONICS; BIOLOGY; PHYTOPLANKTON; ZOOPLANKTON; CHEMISTRY; NEW-ZEALAND; REVIEW;
D O I
10.1080/00288330.1991.9516495
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
The last quarter-century has witnessed major advances in New Zealand oceanography, that have been driven by technological and intellectual change. In geological oceanography, realisation that plate tectonics was more than a working hypothesis changed older concepts about the ocean floor. This was particularly important to New Zealand marine science, as much of the plate boundary is offshore. In physical oceanography, recognition that ocean variability could be much stronger than the mean flows was very relevant to the south-west Pacific. This is because the New Zealand Plateau strongly perturbs the generally west-to-east flow in the two major surface water masses surrounding the Plateau and, in turn, controls biological production. In biological oceanography, there has been a rapid transition from a descriptive to a process-oriented approach in research before the descriptive phase was completed. As yet there is very little information on interannual variability; all types of spatial variability which occur in the New Zealand region may not yet have been defined. In chemical oceanography, modern techniques have allowed New Zealanders to place knowledge of this region in a global context and contribute to an improved understanding of chemical processes.
引用
收藏
页码:429 / 441
页数:13
相关论文
共 124 条
[1]  
Andrews P.B., Notes on a sediment map for the south otago continental shelf, New Zealand Journal of Marine and Freshwater Research, 13, pp. 309-313, (1979)
[2]  
Anonymous, Report of the Review Committee on Biosystematic and Ecological Science, (1989)
[3]  
Baker A.N., Rowe F., Clark H., A new class of echinodermata from New Zealand, Nature, 321, pp. 862-864, (1986)
[4]  
Barber N.F., Some relations to be expected between the directional spectra of swell observed at different times and places on the ocean, New Zealand Journal of Science, 1, pp. 330-341, (1958)
[5]  
Barnes E.J., Eastern cook strait region circulation inferred from satellite-derived data, New Zealand Journal of Marine and Freshwater Research, 19, pp. 405-411, (1985)
[6]  
Barnes P.M., Cheung K.C., Smits A.P., Almagor G., Read S., Barker P.R., Froggatt P., Geotechnical Analysis of the Kidnappers Slide, Upper Continental Slope, New Zealand.
[7]  
Bary B.M., Species of zooplankton as a means of identifying different surface waters and demonstrating their movements and mixing, Pacific Science, 13, pp. 14-54, (1959)
[8]  
Bergquist P.R., The ordinal and subclass classification of the demospongiae (Porifera): Appraisal of the present arrangement, and proposal of a new order, New Zealand Journal of Zoology, 7, pp. 1-6, (1980)
[9]  
Boxshall G.A., Lincoln R.J., Tantulocarida, anew class of crustacea ectoparasitic on other crustaceans, Journal of Crustacean Biology, 3, pp. 1-16, (1983)
[10]  
Bradford J.M., Chang F.H., Standing stocks and productivity of phytoplankton off westland, New Zealand, february 1982, New Zealand Journal of Marine and Freshwater Research, 21, pp. 71-90, (1987)