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Numerical Investigations on Supercritical Heat Transfer Characteristics of Environmental Friendly Refrigerants 被引量:1
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作者 Adnan Ibrahim Peng Hu +5 位作者 Yiran Jiang Ali Riaz Farrukh Saleem Yifang Dong Lei Jia panpan zhao 《International Journal of Clean Coal and Energy》 2021年第2期21-40,共20页
The heat transfer of supercritical fluids is a vastly growing field, specifically to find suitable alternatives to replace conventional R134a, which can be beneficial for climate change. Most of the experimental and n... The heat transfer of supercritical fluids is a vastly growing field, specifically to find suitable alternatives to replace conventional R134a, which can be beneficial for climate change. Most of the experimental and numerical investigations have been conducted to explore supercritical water, carbon dioxide and R134a as heat transfer working fluids. Hydrofluoroolefin (HFO) and refrigerants blends have been considered the most environment-friendly refrigerants to replace Chlorofluorocarbons (CFCs), Hydrochlorofluoro-carbons (HCFCs) and Hydrofluorocarbons (HFCs). Their main advantage of zero Ozone Depletion Potential (ODP) and comparatively lower Global Warming Potential (GWP) have attracted growing amount of attention to mitigate environmental issues. This work adopts the computational method and takes the environmentally friendly refrigerants to investigate the heat transfer characteristics under widely used shear-stress transport (SST) model. A comprehensive comparison was performed at reduced pressure of 1.10 for supercritical fluids R515A, R1234ze(E) and R134a. The peaks of heat transfer coefficient occurred in the vicinity of pseudo critical temperature for all of these considered fluids;however, R134a resulted in higher heat transfer coefficient, Reynolds number and Prandtl number in comparison with R515A and R1234ze(E). The higher heat transfer coefficient of supercritical fluid R134a is owing to its thermophysical properties and the specific heat plays crucial role in the heat transfer of supercritical fluids. Owing to environmental issues, R515A can be a considerable replacement of R134a. R1234ze(E) is also promising alternative to R134a;however, safety issues should thoroughly concern its mild flammable characteristics. 展开更多
关键词 Heat Transfer Supercritical Fluids Simulations R515A R1234ze(E) Environmental Friendly Refrigerants
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Thermophysical Properties and Supercritical Heat Transfer Characteristics of R515A
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作者 Adnan Ibrahim Peng Hu +5 位作者 Yiran Jiang Farrukh Saleem Ali Riaz Yifang Dong Lei Jia panpan zhao 《Natural Science》 2021年第6期218-234,共17页
The heat transfer of supercritical fluids is a vastly growing field, specifically to find suitable <span style="font-family:Verdana;">alternative to replace conventional R134a, which can be beneficial ... The heat transfer of supercritical fluids is a vastly growing field, specifically to find suitable <span style="font-family:Verdana;">alternative to replace conventional R134a, which can be beneficial for climate change. A </span><span style="font-family:Verdana;">considerable suggestion is R515A which possesses considerably lower global warming potential. The present simulations are designed to study supercritical fluid R515A under cooling conditions in horizontal position. The effect of pressure, mass flux, heat flux and tube diameter were considered for horizontal tube in the vicinity of pseudo critical temperature. Numeri</span><span style="font-family:Verdana;">cal investigations on heat transfer characteristics of supercritical fluid R515A were per</span><span style="font-family:Verdana;">formed using widely used shear-stress transport (SST) model. Moreover, heat transfer correlations </span><span style="font-family:Verdana;">were developed and suggested to accurately predict Nusselt number within 10% accuracy. </span><span style="font-family:Verdana;">The simulation results showed about 3.98% average absolute deviation.</span> 展开更多
关键词 Environmental Friendly Refrigerant Supercritical Fluid R515A Simulations Heat Transfer Correlations Shear-Stress Transport (SST) Model
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S_(3307)和KT对春玉米叶片碳代谢及产量的影响 被引量:4
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作者 李东 郑殿峰 +6 位作者 冯乃杰 赵晶晶 张盼盼 蔡光蓉 赵海东 周行 齐德强 《中国农学通报》 2017年第7期16-21,共6页
探讨叶面喷施烯效唑(S_(3307))和激动素(KT)对玉米叶片碳代谢及产量的影响,为S_(3307)和KT在玉米生产上的应用提供科学依据。大田栽培条件下,以‘德美亚1’和‘德美亚2’为试验材料,于玉米7叶期喷施S_(3307)和KT,喷施清水为对照,研究其... 探讨叶面喷施烯效唑(S_(3307))和激动素(KT)对玉米叶片碳代谢及产量的影响,为S_(3307)和KT在玉米生产上的应用提供科学依据。大田栽培条件下,以‘德美亚1’和‘德美亚2’为试验材料,于玉米7叶期喷施S_(3307)和KT,喷施清水为对照,研究其对玉米叶片碳代谢及产量的影响。结果表明:S_(3307)和KT均显著增加了2个品种的穗重、粒重、穗行数、行粒数和单粒重,最终提高了玉米籽粒产量。其中,KT对‘德美亚1’产量的调控效果较好,S_(3307)对‘德美亚2’产量的调控效果较好。喷施调节剂后第21~30天,2种调节剂均降低了叶片淀粉含量和淀粉酶活性,‘德美亚1’的叶片淀粉含量下降幅度为0.16%~31.10%,淀粉酶活性下降幅度为7.58%~45.83%;‘德美亚2’的叶片淀粉含量下降幅度为2.68%~42.01%,淀粉酶活性的下降幅度为3.97%~39.82%。喷施调节剂后第21天,2个品种叶片蔗糖和可溶性糖含量的大小依序为KT>S_(3307)>CK,‘德美亚1’的2个处理蔗糖和可溶性糖含量比CK分别增加84.64%、31.28%、67.38%和52.74%,‘德美亚2’的2个处理蔗糖和可溶性糖含量比CK分别增加14.21%、3.92%、49.34%和37.50%。2种调节剂均显著促进了生育后期玉米叶片的生理活性,延缓了叶片衰老,进而提高了玉米产量。 展开更多
关键词 玉米 烯效唑 激动素 叶片 产量
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无醛膜状木材胶粘剂的制备与应用 被引量:1
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作者 刘建凯 张越 +2 位作者 王盼盼 杨学震 赵季若 《中国胶粘剂》 CAS 北大核心 2017年第10期24-26,43,共4页
采用熔融接枝法将MAH(顺丁烯二酸酐)接枝到LDPE(低密度聚乙烯)上,形成以PE(聚乙烯)大分子链为骨架、MAH为侧基的接枝共聚物(PE-g-MAH);然后采用挤出吹塑法制得无甲醛、无其他挥发性有毒物质的膜状胶粘剂(即无醛胶膜)。研究结果表明:当... 采用熔融接枝法将MAH(顺丁烯二酸酐)接枝到LDPE(低密度聚乙烯)上,形成以PE(聚乙烯)大分子链为骨架、MAH为侧基的接枝共聚物(PE-g-MAH);然后采用挤出吹塑法制得无甲醛、无其他挥发性有毒物质的膜状胶粘剂(即无醛胶膜)。研究结果表明:当胶粘剂中w(MAH)=2%(相对于LDPE质量而言)、热压温度为130℃、热压压力为1.0 MPa、热压时间为6 min、冷压压力为1.3 MPa和冷压时间为3 min时,由无醛胶膜压制而成的II类胶合板的胶接强度(均超过1.30 MPa)符合GB/T 9846—2004《胶合板》标准要求。 展开更多
关键词 无醛胶粘剂 酐基化聚乙烯 胶合板 胶接强度
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