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網(wǎng)格化低溫相變儲熱單元傳熱性能預(yù)測研究
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內(nèi)蒙古自治區(qū)自然科學(xué)基金項目(2021MS05030),、內(nèi)蒙古自治區(qū)高等學(xué)校科學(xué)研究項目(NJZY21323,、NJZY19081)和內(nèi)蒙古工業(yè)大學(xué)大學(xué)生創(chuàng)新實驗計劃項目(2020)


Prediction of Heat Transfer Performance of Gridding Low Temperature Phase Change Heat Storage Unit
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    摘要:

    設(shè)計了內(nèi)流式網(wǎng)格化低溫相變儲熱單元,。確定了影響相變儲熱單元傳熱系數(shù)的關(guān)鍵影響因素,分析了單一因素對相變儲熱單元傳熱系數(shù)的影響規(guī)律,。分別在儲熱及放熱工況下,,采用改進(jìn)的多元非線性回歸法構(gòu)建了相變儲熱單元傳熱系數(shù)的預(yù)測模型,并檢驗了擬合誤差。結(jié)果表明:相變儲熱單元傳熱系數(shù)受相變儲熱材料側(cè)平均溫度及換熱工質(zhì)側(cè)定性溫度的協(xié)同影響,,相變儲熱材料側(cè)平均溫度為主要影響因素,,換熱工質(zhì)側(cè)定性溫度為次要影響因素,兩者之間具有顯著的交互性,。儲熱或放熱工況下,,相變儲熱單元傳熱系數(shù)隨單一因素的變化規(guī)律基本一致,儲熱階段傳熱系數(shù)明顯高于放熱階段,,相變儲熱單元傳熱系數(shù)預(yù)測模型的平均相對預(yù)測誤差均小于5.00%,。

    Abstract:

    The low temperature phase change heat storage unit with tubular internal flow gridding was designed. The key factors affecting the heat transfer coefficient of the phase change heat storage unit were determined, and the influence of single factor on the heat transfer coefficient of phase change heat storage unit was analyzed. In the case of heat storage and heat release, the prediction model of heat transfer coefficient of the phase change heat storage unit was established by using the improved multivariate nonlinear regression method, and the fitting error was tested. The results showed that the heat transfer coefficient of the phase change heat storage unit was synergistically influenced by the average temperature of the phase change heat storage material side and the qualitative temperature of the heat transfer working medium side. The average temperature of phase change heat storage material side was the main influencing factor, the qualitative temperature of heat transfer medium side was the secondary influencing factor. And there was significant interaction between the above two. In the case of heat storage or heat release, the change law of heat transfer coefficient of phase change heat storage unit with single factor was basically consistent, the heat transfer coefficient in the heat storage stage was obviously higher than that in the heat release stage. The average relative errors of the prediction model of heat transfer coefficient of phase change heat storage boxes were all less than 5.00%. Based on this study, the intelligent phase change constant temperature system configuration in agricultural greenhouses could be guided and optimized.

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郭梟,邱云峰,王亞輝,史志國,田瑞,崔瑞軍.網(wǎng)格化低溫相變儲熱單元傳熱性能預(yù)測研究[J].農(nóng)業(yè)機(jī)械學(xué)報,2022,53(3):384-391. GUO Xiao, QIU Yunfeng, WANG Yahui, SHI Zhiguo, TIAN Rui, CUI Ruijun. Prediction of Heat Transfer Performance of Gridding Low Temperature Phase Change Heat Storage Unit[J]. Transactions of the Chinese Society for Agricultural Machinery,2022,53(3):384-391.

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  • 收稿日期:2021-03-26
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  • 在線發(fā)布日期: 2022-03-10
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