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自然通风对日光温室气温影响的模拟分析

宿文1,薛晓萍2*,熊宇1,曹洁2
  

  1. (1南京信息工程大学, 南京 210044; 2山东省气候中心, 济南 250031)
  • 出版日期:2016-06-10 发布日期:2016-06-10

Modeling the effect of natural ventilation on temperature inside solar greenhouse.

SU Wen1, XUE Xiao-ping2*, XIONG Yu1, CAO Jie2#br#   

  1. (1Nanjing University of Information Science & Technology, Nanjing 210044, China; 2Shandong Provincial Climate Center, Jinan 250031, China).
  • Online:2016-06-10 Published:2016-06-10

摘要: 以济南地区植有番茄的日光温室为研究对象,基于试验观测,利用计算机流体动力学(computational fluid dynamics, CFD)数值模拟技术,采用标准的κε湍流模型以及离散坐标(DO)辐射模型,对济南地区冬季温室自然通风条件下气温分布进行3维数值模拟。结果表明:CFD能够较好地模拟自然通风条件下温室内气温变化特征,气温实测值和模拟值平均误差为0.9 ℃,在济南地区冬季晴天不同风向以及对应平均风速条件下,通风16~23 min即可达到作物适宜气温;风向为NE、ENE、E、ESE、SE、SW时温室内南北气温相差3 ℃左右,南侧东西部气温相差4 ℃左右,风向为SSW时,温室内南北相差4 ℃左右,东西部气温相差1 ℃左右。研究结果可为日光温室的结构优化和生产管理提供科学依据。

关键词: 保护成效评估, 指标体系, 生态有效性, 管理有效性, 野生动物保护, 自然保护区管理

Abstract: The 3-D numerical simulation was utilized to study temperature distribution of the greenhouse under natural ventilation in winter based on the experimental observation of the solar greenhouse with tomatoes in Jinan. The temperature distribution was obtained using the computational fluid dynamics (CFD) numerical techniques with the support of the standard κε turbulent model and the discrete ordinates (DO) radiation model. The results showed that the CFD numerical techniques could generate a satisfactory simulation of the temperature variation of the naturally ventilated solar greenhouse. The average error between the simulated and actual temperature was 0.9 ℃. In the sunny days in winter, the temperature of the greenhouse could reach the suitable level for crop within 16-23 min under the conditions of the different wind directions and the corresponding average wind speeds in Jinan. The temperature difference was around 3 ℃ between the temperatures in the north and south and around 4 ℃ between the east and west when the wind direction was NE, ENE, E, ESE, SE, SW. The temperature difference was around 4 ℃ between the north and south and around 1 ℃ between the east and west when the wind direction was SSW. Our results could provide a scientific reference to the structural optimization and the production management of the solar greenhouse.

Key words: protection efficacy evaluation, indicator system, ecological effectiveness, management effectiveness, wildlife protection, nature reserve management.