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Environmental and economic sustainability of PVT drying system: A heat transfer approach

机译:PVT干燥系统的环境和经济可持续性:传热方法

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Present communication is an attempt to explore the best PV technology suitable for PVT solar drying system through environmental and economic feasibility. Experimental setup for one of the PV technology (c-Si) has been taken for experimental validation with theoretical model. Further, the environmental feasibility and environ economic evaluation for drying system having roof with various PV namely, c-Si, p-Si or m-Si, a-Si, CdTe, and CIGS have been evaluated through energy matrices (EPBT, EPF, and LCCE), CO_2 emission, net CO_2 mitigation and carbon credit earned which is based on energy and exergy output of the system on yearly basis. The economic analysis has been carried out with experimental data taken on c-Si PVT drying system by considering grapes as a crop. Cogeneration efficiency has been calculated for different PV technologies and found to be highest for c-Si PV technology that is, 61.71%, 77.98%, and 12.25% based on energy (electrical and thermal) gain, equivalent (overall) energy gain, and exergy gain, respectively. LCCE on energy basis reveals that for the five-year system life, c-Si and CIGS have equal efficiency but after five years, c-Si is best. Cogeneration efficiency of system on the basis of energy (electrical + thermal) gain, equivalent (overall) energy gain and overall exergy gain found to be maximum with c-Si PV technology that is, 61.71%, 77.98%, and 12.25%, respectively.
机译:目前的沟通是一种尝试通过环境和经济可行性探索适用于PVT太阳能干燥系统的最佳光伏技术。采用理论模型的实验验证,采取了一种PV技术(C-SI)的实验设置。此外,通过能量矩阵(EPBT,EPF)评估了具有各种PV,C-Si,P-Si或M-Si,A-Si,CdTe和CIGS的屋顶的干燥系统的环境可行性和环境。和LCCE),CO_2排放,净CO_2缓解和碳信用额度基于年度基础的能源和出境输出。经济分析已经通过考虑葡萄作为作物而在C-Si PVT干燥系统上进行的实验数据进行。针对不同的光伏技术计算了热电联产效率,发现C-Si PV技术最高,可根据能量(电气和热)增益,相当于(总体)能源增益,以及相当于61.71%,77.98%和12.25%进球增益。能源基础的持续揭示了,对于五年的系统生活,C-Si和CIGS具有平等的效率,但在五年后,C-Si是最好的。系统的热电联产效率基于能量(电气+热)增益,相当于(总体)能源增益和总体漏购的收益,C-Si PV技术的最大值,分别为61.71%,77.98%和12.25% 。

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