Rain, rain, gone away: decreased growing-season rainfall for the dryland cropping region of the south-west of Western Australia

被引:19
作者
Scanlon, Timothy T. [1 ]
Doncon, Greg [2 ]
机构
[1] Dept Primary Ind & Reg Dev, 75 York Rd,POB 483, Northam, WA 6401, Australia
[2] Dept Primary Ind & Reg Dev, POB 432, Merredin, WA 6415, Australia
关键词
climate change; dryland agriculture; grainbelt; USE EFFICIENCY; WHEAT; ENVIRONMENT; YIELD;
D O I
10.1071/CP19294
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The shift in Indian Ocean sea surface temperatures in 1976 led to a change in rainfall for the broad-scale winter annual grain cropping and pasture region in the south-west of Western Australia (the WA wheatbelt). Agriculture in the eastern part the WA wheatbelt was particularly sensitive to the change in rainfall because it is a marginal area for agronomic production, with low rainfall before changes in sea surface temperature. A second shift in sea surface temperature occurred in 2000, but there has been no analysis of the resulting impact on rainfall in the eastern WA wheatbelt. An analysis of rainfall pre- and post-2000 was performed for sites in the eastern WA wheatbelt in three groups: 19 sites in the west, 56 central, and 10 east. The analysis found a decline in growing-season rainfall (i.e. April-October), especially during May-July, post-2000. Rainfall declines of 49.9 mm (west group), 39.1 mm (central group) and 28.0 mm (east group) represented respective losses of 20.1%, 17.4% and 14.2% of growing-season rainfall. Increases in out-of-season rainfall in the respective groups of 31.0, 33.6, and 50.7 mm (57.8%, 60.8% and 87.6%) meant that annual rainfall changes were smaller than growing-season losses. The west and central groups lost 17.5 and 6.16 mm annual rainfall, whereas the east group gained 15.6 mm. Analysis of wheat yield indicated reductions of 13.5% (west) and 9.90% (central) in the eastern WA wheatbelt; the small group of east sites had a potential yield gain of 8.9% arising from the increased out-of-season rainfall. Further, increased out-of-season rainfall will exacerbate weed and disease growth over the summer fallow.
引用
收藏
页码:128 / 133
页数:6
相关论文
共 28 条
  • [1] Rainfall, sowing time, soil type, and cultivar influence optimum plant population for wheat in Western Australia
    Anderson, WK
    Sharma, DL
    Shackley, BJ
    D'Antuono, MF
    [J]. AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 2004, 55 (09): : 921 - 930
  • [2] [Anonymous], 2007, SYNTHESIS REPORT CON
  • [3] [Anonymous], PLANF BANKW BENCHM 2
  • [4] [Anonymous], 2007, CLIMATE CHANGE AUSTR
  • [5] ASCHMANN H, 1973, P11
  • [6] Distinctive climate signals in reanalysis of global ocean heat content
    Balmaseda, Magdalena A.
    Trenberth, Kevin E.
    Kaellen, Erland
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2013, 40 (09) : 1754 - 1759
  • [7] Key findings from the Indian Ocean Climate Initiative and their impact on policy development in Australia
    Bates, Bryson C.
    Hope, Pandora
    Ryan, Brian
    Smith, Ian
    Charles, Steve
    [J]. CLIMATIC CHANGE, 2008, 89 (3-4) : 339 - 354
  • [8] Cameron J., 2014, REFERENCE GRAIN GROW
  • [9] Statistical downscaling of daily precipitation from observed and modelled atmospheric fields
    Charles, SP
    Bates, BC
    Smith, IN
    Hughes, JP
    [J]. HYDROLOGICAL PROCESSES, 2004, 18 (08) : 1373 - 1394
  • [10] Environment characterization as an aid to wheat improvement: interpreting genotype-environment interactions by modelling water-deficit patterns in North-Eastern Australia
    Chenu, K.
    Cooper, M.
    Hammer, G. L.
    Mathews, K. L.
    Dreccer, M. F.
    Chapman, S. C.
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2011, 62 (06) : 1743 - 1755