土耳其部分地区冬季寒积的历史变化

IF 1 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Atmosfera Pub Date : 2022-09-29 DOI:10.20937/atm.53135
H. Karadağ, K. Yıldız, K. Yürekli
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引用次数: 0

摘要

落叶果树需要在冬季低温下暴露一段时间才能生产出正常的作物。除了全球变暖在许多其他地区的影响外,它对冷积累的影响也是一个令人担忧的原因。因此,在世界各地的重要园艺地区进行了许多关于气候变化对冷积累影响的研究。在这项研究中,首次在土耳其的12个地点检验了使用五个模型计算的冷积累的历史变化。结果表明,安卡拉省、宾格尔省、迪亚巴克尔省、马拉蒂亚省和通塞利省的冷积累没有显著趋势。在某些地区,根据所使用的模型,降温趋势的重要性、幅度和方向各不相同。研究中使用的所有五个模型都表明,在冬季相对温和的Şanlıurfa,冬季寒冷积累显著减少。在冬季相对寒冷的埃尔津坎,根据犹他州、修正犹他州和正犹他州模型计算的冷积累量有增加的趋势。结果表明,落叶果树的冷藏需求可能会产生严重后果,尤其是在冬季温和的地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Historical Change of Winter Chill Accumulation in Some Regions of Turkey
Deciduous fruit trees need to be exposed to low winter temperatures for a certain period time to produce regular crops. In addition to the effects of global warming in many other areas, its effect on cold accumulation is also a reason of concern. As a result, many studies have been carried out in important horticultural areas around the world on the impact of climate change on cold accumulation. In this study, historical changes of cold accumulation calculated using five models were examined in 12 locations in Turkey for the first time. Results show that there was no significant trend in cold accumulation in the provinces of Ankara, Bingöl, Diyarbakır, Malatya, and Tunceli. In some locations, the significance, magnitude, and direction of the chilling trend differed according to the model used. All five models used in the study indicated significant decreases in winter chill accumulation in Şanlıurfa, a site with relatively mild winters. In Erzincan, which has relatively cold winters, increasing trends were detected in cold accumulation calculated according to Utah, Modified Utah, and Positive Utah models. Results show that serious consequences may arise related to the chilling requirement of deciduous fruit trees, especially in regions with mild winters.
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来源期刊
Atmosfera
Atmosfera 地学-气象与大气科学
CiteScore
2.20
自引率
0.00%
发文量
46
审稿时长
6 months
期刊介绍: ATMÓSFERA seeks contributions on theoretical, basic, empirical and applied research in all the areas of atmospheric sciences, with emphasis on meteorology, climatology, aeronomy, physics, chemistry, and aerobiology. Interdisciplinary contributions are also accepted; especially those related with oceanography, hydrology, climate variability and change, ecology, forestry, glaciology, agriculture, environmental pollution, and other topics related to economy and society as they are affected by atmospheric hazards.
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