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Sensitivity analysis of CSGHEAT model for estimation of heating consumption in a Chinese-style solar greenhouse

机译:中国式太阳能温室供暖消耗估算CSGHEAT模型的敏感性分析

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The sensitivity of a heating simulation model (CSGHEAT) was performed for estimation of the time-dependent heating requirement in a Chinese-style solar greenhouse in cold region. Results showed that the constant value of air thermal conductance is the main default parameter of the model that significantly affected the model output. The results also indicated the heating requirement is highly sensitive to the greenhouse design parameters including the thermal properties of cover, thermal blanket, and greenhouse perimeter. The thermal blanket is the most important design parameter for the Chinese-style solar greenhouse, and the heating requirement could be increased between 32 and 41% during the coldest three months (January, February, and December) for changing the thermal conductivity from 0.01 to 0.05 W/m K. Increasing daytime indoor set-point temperature from 19 to 23 degrees C would increase the heating demand between 13 and 20%, whereas the heating demand could be increased by 9-18% for increasing the night-time temperature from 16 to 20 degrees C. Results also indicate the heating demand could be reduced up to 20% during the coldest period for increasing the indoor relative humidity from 70 to 90%. The results from this study could be useful for understanding the energy saving management of greenhouse operations and for designing the energy-efficient Chinese-style solar greenhouses in cold regions.
机译:进行加热仿真模型(CSGHEAT)的灵敏度进行了估计寒冷地区中式太阳能温室中的时间依赖性加热要求。结果表明,空气热敏率的恒定值是模型的主要默认参数,可显着影响模型输出。结果还表明,加热要求对温室设计参数高度敏感,包括盖板,热毯和温室周边的热特性。热毯是中式太阳能温室最重要的设计参数,在最寒冷的三个月(1月,2月和12月)中,加热要求可以在32至41%之间增加,以便将导热率从0.01改变为0.01 0.05 W / m K.增加日间室内设定点温度从19〜23摄氏度增加将增加13到20%之间的加热需求,而加热需求可以增加9-18%,以增加夜间温度在最冷的时期,结果还可以在最冷的时间内降低20%,从70%〜90%增加,结果还表明,在最冷的时期,加热需求也可以降低20%。本研究的结果可用于了解温室运营的节能管理,并为寒冷地区设计节能汉英太阳能温室。

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