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Modelling and experimental verification of the thermal performance of an active solar heat storage-release system in a Chinese solar greenhouse

机译:中国太阳能温室活性太阳能储热系统热性能的建模与实验验证

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摘要

An active solar heat storage-release (AHS) system that stores solar energy in a water storage tank can supplement heat to raise the air temperature in Chinese solar green-houses (CSGs) during cold winter nights. To quantify such heat transfer processes and to improve the performance of AHS systems, a tank temperature model was developed. The model was calibrated and validated, and it can predict water temperatures in the storage tank with an average accuracy of 0.4 degrees C. The model was used to determine the required solar collector area and storage tank volume under various desired air temperatures in different greenhouses. In two cases, greenhouses with a ground area of 272 m(2) and roughly 62 m(2) of solar collectors were installed to maintain temperatures above 12 degrees C under Beijing climate conditions. To facilitate a 1 degrees C increase in the air temperature set-point, approximately 2 m(2) of additional solar collectors and 0.1 m(3) of additional storage tanks are needed. (C) 2017 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:在蓄水池中存储太阳能的有源太阳能储热 - 释放(AHS)系统可以补充热量,以在寒冷的冬季夜晚升高中国太阳能绿房(CSG)的空气温度。为了量化这种传热过程并提高AHS系统的性能,开发了一种坦克温度模型。该模型被校准并验证,它可以预测储罐中的水温,平均精度为0.4℃。该模型用于确定所需的太阳能收集器面积和储罐体积在不同温室的各种所需空气温度下。在两种情况下,安装了272米(2)(2)的温室和大约62米(2)个太阳能集热器,以维持在北京气候条件下12摄氏度高于12摄氏度的温度。为了便于1摄氏度增加的空气温度设定点,需要大约2米(2)个额外的太阳能收集器和0.1米(3)个额外的储罐。 (c)2017年IAGRE。 elsevier有限公司出版。保留所有权利。

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