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温室气候控制×采后贮藏模拟×
领域园艺学园艺学
方法族Process / pipelineProcess / pipeline
起源年份19902001
提出者Modern horticultural engineeringLuc Tijskens and Bart Nicolaï
类型control systems pipelinecomputational modeling pipeline
开创性文献Stanghellini, C. (2003). Transpiration in greenhouse horticulture: An introduction. Acta Horticulturae, 618, 101–111. link ↗Tijskens, L. M., & Polderdijk, J. J. (2001). A generic model for keeping quality of vegetable produce during storage and distribution. Postharvest Biology and Technology, 23(1), 13–25. link ↗
别名climate management, environmental control, HVAC optimizationshelf life prediction, storage modeling, quality decay simulation
相关34
摘要Greenhouse climate control integrates measurement, modeling, and automated actuation to maintain optimal temperature, humidity, light, and CO₂ concentrations for plant growth. Modern systems use sensors and control algorithms to respond dynamically to external weather and internal plant needs. This approach increases yield, shortens crop cycles, reduces disease pressure, and improves energy efficiency compared to manual or static setpoint controls.Postharvest storage simulation uses computational models to predict fruit and vegetable quality degradation during storage and distribution under variable temperature and humidity conditions. Pioneered by Tijskens and Nicolaï in 2001, these mechanistic and empirical models enable logistics optimization, reduce food waste, and improve supply chain transparency. They are integrated into decision support systems for commercial packinghouses and research facilities.
ScholarGate数据集
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  1. v1
  2. 2 来源
  3. PUBLISHED

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ScholarGate方法对比: Greenhouse Climate Control · Postharvest Storage Simulation. 于 2026-06-19 检索自 https://scholargate.app/zh/compare