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Parametric studies for heating performance of an 'earth to air heat exchanger coupled with a greenhouse

机译:地球空气热交换器与温室相结合的加热性能的参数研究

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摘要

A thermal model has been developed to investigate the potential of using the stored thermal energy of the ground for greenhouse heating with the help of an earth to air heat exchanger (EAHE) system integrated with the greenhouse located in the premises of IIT, Delhi, India. Experiments were conducted extensively during the winter period from November 2002 to March 2003, but the model developed was validated against the clear and sunny days. Parametric studies performed for EAHE coupled with the greenhouse illustrate the effects of buried pipe length, pipe diameter, mass flow rate of air, depth of ground and soil types on greenhouse air temperatures. Temperatures of greenhouse air with the experimental parameters of EAHE were found to be on an average 7-8 deg C more in the winter than the same greenhouse without EAHE. Greenhouse air temperatures increase in the winter with increasing pipe length, decreasing pipe diameter, decreasing mass flow rate of flowing air inside buried pipe and increasing depth of ground up to 4m. Predicted and measured values of greenhouse air temperature, which were verified in terms of root mean square of percent deviation and correlation coefficient, exhibited fair agreement.
机译:已开发出一种热模型,以研究通过利用地面空气热交换器(EAHE)系统与位于印度德里IIT的温室相集成的地面存储的热量来进行温室加热的潜力。在2002年11月至2003年3月的冬季进行了广泛的实验,但是开发的模型在晴天和晴天都得到了验证。针对EAHE和温室的参数研究表明了埋管长度,管道直径,空气质量流量,地面深度和土壤类型对温室温度的影响。发现具有EAHE实验参数的温室空气温度在冬天比没有EAHE的相同温室平均高7-8摄氏度。冬季,随着管道长度的增加,管道直径的减小,埋管内部流动空气的质量流量的减小以及地面深度的增加(达4m),温室温度会升高。温室温度的预测值和实测值经偏差百分比和相关系数的均方根检验,得到了较好的吻合。

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