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首页> 外文期刊>Geomatics,Natural Hazards & Risk >Risk evaluation of solar greenhouse cucumbers low temperature disaster based on GIS spatial analysis in Tianjin, China
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Risk evaluation of solar greenhouse cucumbers low temperature disaster based on GIS spatial analysis in Tianjin, China

机译:基于GIS空间分析的天津市天津太阳能温室黄瓜低温灾害风险评价

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摘要

To plan the cucumber cultivation area scientifically, improve the quality of cucumber and avoid meteorological disaster risks, this article evaluates low temperature disaster risk of greenhouse cucumber in Tianjin, China. Solar greenhouses are the main carriers for facility agriculture in North China which usually do not carry heating and supplementary lighting equipments. Consequently, growth and development of crops are still indirectly influenced by the greenhouse outside weather in some extent. In recent years, low temperature disaster of cucumber during overwintering periods happens frequently which brings large influence on cultivation and production of cucumbers in Tianjin. This research takes three types of solar greenhouses with different heat-retaining capacities as the facility carriers to evaluate the low temperature disaster risk of cucumbers grown in different greenhouses. First, study the corresponding relationship between microclimate elements in greenhouse and meteorological elements out of greenhouse based on assurance rate method and conduct the indexes caused cucumber low temperature disaster in different greenhouses at different development stages. Then, construct the risk evaluation model for low temperature disaster based on natural disaster risk evaluation theory. Finally, the low temperature disaster risk zone-division is realized based on GIS spatial analysis function to evaluate cucumber low temperature disaster risk comprehensively.
机译:为了科学地规划黄瓜栽培区,提高黄瓜的质量,避免气象灾害风险,本文评估了中国天津温室黄瓜的低温灾害风险。太阳能温室是华北地区设施农业的主要运营商,通常不携带供暖和补充照明设备。因此,作物的生长和发展在一定程度上仍然受到温室外部天气的温室的影响。近年来,在过冬时期的黄瓜低温灾害经常发生巨大影响天津黄瓜的培养和生产。该研究采用了三种类型的太阳能温室,具有不同的热量保存能力作为设施载体,以评估在不同温室生长的黄瓜的低温灾害风险。首先,基于保证率法研究温室和气象元素中的微气候元素与传导指标在不同发展阶段不同温室中的索引引起的索引中的相应关系。然后,基于自然灾害风险评估理论构建低温灾害风险评估模型。最后,基于GIS空间分析功能实现了低温灾害风险区分,以全面评估黄瓜低温灾害风险。

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