热条件对白俄罗斯共和国行政区域马铃薯产量的影响

O. V. Davydenko, P. S. Lopukh
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引用次数: 1

摘要

1961—1988年和1989—2015年以及研究期相邻10年的热条件动态分析。估计了一年中各个月份的平均温度、最高日平均温度和最高日平均温度的变化,以及植被活跃期的持续时间和活跃温度的总和。已确定的年平均气温每十年上升0.4°С。与此同时,在马铃薯植被的前半期(5 - 6月),温度变化趋势不明确,而在后半期(7 - 8月),平均气温普遍升高。夏季气温的升高伴随着马铃薯产量负热效应的增加,马铃薯产量偏离趋势线和指标(如7月气温和炎热日数(平均气温高于20°С和最高气温高于30°С)的负相关系数证实了这一点。马铃薯产量偏离趋势线与7月气温的相关统计可靠性仅在1989 -2015年得到证实,覆盖60个行政区。在这些地区和大多数其他地区,相关系数是负的。可以确定的是,建议和证明的最高气温高于30°С(10及以上)的天数临界值决定了该国大部分地区马铃薯产量负偏差的三分之一以上,其在现代时期产生负影响的概率为70%。平均产量下降12.7 c/ha(8%)。研究发现,马铃薯块茎形成和生长最不利的高温期,提出了马铃薯适应温度升高的可能措施:使用耐热马铃薯品种,马铃薯种植日期提前,灌溉(在高温和水分不足的情况下)。
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The influence of thermal conditions on potato yield in the administrative regions of the Republic of Belarus
The analysis of the dynamics of thermal conditions during 1961–1988 and 1989–2015, as well as the adjacent decade of the study period. Changes were estimated for the average temperatures of individual months of the year, high average and maximum daily temperatures, as well as for the duration of the active vegetation period and the sums of active temperatures. The established increase in average annual temperatures was 0.4 °С per decade. At the same time, in the first half of potato vegetation (May – June) the thermal trends are ambiguous, while in the second half (July – August) the increase of average air temperatures prevails. The increase in temperatures in the summer months is accompanied by an increase in the prevalence of negative thermal effects on potato yields, which is confirmed by negative correlation coefficients of potato yield deviations from trend lines and indicators such as the air temperature in July and the number of hot days (with an average temperature above 20 °С and a maximum temperature above 30 °С). Statistical reliability of correlation between potato yield deviations from trend lines and July temperatures is confirmed only in 1989 –2015 and covers 60 administrative districts. In these and most of the remaining areas, the correlation coefficients are negative. It is established that the proposed and justified critical value of the number of days with a maximum temperature above 30 °С (10 and more) determines more than a third of the negative deviations of potato yield in most of the country, and the probability of its negative impact in the modern period is 70 %. The decrease in average yield is 12.7 c/ha (8 %). It was found that the most unfavorable hot period occurs during the tuber formation and growth of potato tubers, in connection with which possible measures of adaptation of potatoes to temperature increase are proposed: the use of heat-resistant potato varieties, the shift of potato planting dates to earlier dates, irrigation (in the case of a combination of high temperatures with insufficient moisture).
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