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SHAW模型在冬小麥晚霜凍害監(jiān)測中的適用性研究
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國家自然科學基金項目(41471342)


Applicability of Simultaneous Heat and Water Model for Monitoring Late Frost Injury of Winter Wheat
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    摘要:

    利用一維多層水熱耦合SHAW(Simultaneous heat and water)模型,,在2015年商丘田間實驗基礎上,,模擬冬小麥拔節(jié)后晚霜凍敏感期幼穗層氣溫,,并結(jié)合拔節(jié)后天數(shù)對晚霜凍害的發(fā)生及其程度進行監(jiān)測,,以研究SHAW模型在冬小麥晚霜凍害監(jiān)測中的適用性,。結(jié)果表明,,模型能準確模擬晚霜凍敏感期幼穗層20~60cm高度垂直方向上的每小時氣溫變化,,模擬值與實測值間的絕對誤差低于1℃的占44.7%,,低于2℃的占72.5%,,且夜晚的模擬效果優(yōu)于白天,,相較于氣象站日最低氣溫,SHAW模型模擬的幼穗層日最低氣溫和低溫持續(xù)時間更能反映實際凍害發(fā)生時的低溫環(huán)境,。由于農(nóng)田小氣候的影響,,氣象站、農(nóng)田上方2m高度和幼穗層氣溫具有較大差異性,,當SHAW模型所需的農(nóng)田上方2m高度氣象數(shù)據(jù)缺乏時,,將氣象站數(shù)據(jù)轉(zhuǎn)換為農(nóng)田2m高度氣象數(shù)據(jù)代入模型的模擬方法優(yōu)于直接將氣象站氣象數(shù)據(jù)代入模型的模擬方法,前者模擬的幼穗層日最低氣溫與實測值更為接近,,所確定的晚霜凍等級與實際情況更加符合,。因此,利用SHAW模型對冬小麥晚霜凍害進行監(jiān)測是可行且適用的,,相較于傳統(tǒng)的氣象站日最低氣溫監(jiān)測指標,,可提高監(jiān)測晚霜凍害發(fā)生情況和凍害程度的準確率,。

    Abstract:

    The late frost injury of winter wheat usually occurs during the jointing-heading stage and may result in severe yield loss in large areas, thus it is of significant importance to monitor and assess late frost injury of winter wheat real-timely and accurately. The simultaneous heat and water (SHAW) model is a detailed process model of heat and water movement in plant—snow—residue—soil system, and it has the capability to simulate heat and water transfer within the canopy. The SHAW model was applied to simulate air temperature within winter wheat young ear layer at the sensitive period after jointing stage in Shangqiu City on the basis of field experiment in 2015, and it was also adopted to monitor occurrence and damage level of late frost injury combining with the days after jointing stage. The results indicated that the air temperature within young ear layer (20~60cm) was accurately simulated as a whole, in which about 44.7% and 72.5% of the absolute errors of simulated value were less than 1℃ and 2℃, respectively, and the simulated air temperature at night was better than that in the daytime. Compared with the minimum air temperature measured at the height of 1.5m at the meteorological station, the simulated minimum air temperature within the young ear layer of winter wheat and the low temperature duration can well express the low temperature environment of young ear when late frost injury was occurred. There were large differences among the minimum air temperature measured at the meteorological station, the minimum air temperature measured at 2m height in the winter wheat fields and within the young ear layer because of the influence of field microclimate. The method which transformed air temperature data from the meteorological station into air temperature data at 2m height in the winter wheat fields was better than the method which used air temperature data from the meteorological station as driving data of SHAW model directly, the minimum air temperature simulated by the former method was close to the measured one, and the late frost injury level evaluated by using the former method was in good agreement with the field surveyed one. Therefore, using SHAW model to monitor late frost injury of winter wheat is feasible and applicable, and compared with the traditional monitoring index of air temperature data from the meteorological station it can enhance the accuracy for monitoring the occurrence and damage level of late frost injury.

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劉峻明,汪念,王鵬新,胡新,黃健熙,潘佩珠. SHAW模型在冬小麥晚霜凍害監(jiān)測中的適用性研究[J].農(nóng)業(yè)機械學報,2016,47(6):265-274. Liu Junming, Wang Nian, Wang Pengxin, Hu Xin, Huang Jianxi, Pan Peizhu. Applicability of Simultaneous Heat and Water Model for Monitoring Late Frost Injury of Winter Wheat[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(6):265-274.

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  • 收稿日期:2016-01-03
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  • 在線發(fā)布日期: 2016-06-10
  • 出版日期: 2016-06-10
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