中文翻译英文在线翻译文章通过对上海市杨浦区鞍山四村进行技能技术改造,计算太阳能经济效益、环境效益和对太阳能热水系统进行优化分析太阳能经济性评价中选用的指标为:单位供电成

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中文翻译英文在线翻译文章通过对上海市杨浦区鞍山四村进行技能技术改造,计算太阳能经济效益、环境效益和对太阳能热水系统进行优化分析太阳能经济性评价中选用的指标为:单位供电成中文翻译英文在线翻译文章通过对上

中文翻译英文在线翻译文章通过对上海市杨浦区鞍山四村进行技能技术改造,计算太阳能经济效益、环境效益和对太阳能热水系统进行优化分析太阳能经济性评价中选用的指标为:单位供电成
中文翻译英文在线翻译
文章通过对上海市杨浦区鞍山四村进行技能技术改造,计算太阳能经济效益、环境效益和对太阳能热水系统进行优化分析
太阳能经济性评价中选用的指标为:单位供电成本、净现值(NPV)、投资回收期、太阳能系统寿命节约成本.环境效益评估指标为能量回收期、降低污染物的排放量以及环境成本.文章还对太阳能热水系统进行了用能分析和效率分析.
文章所计算的光伏发电投资回收期为108年:一方面由于系统含有储能装置; 另一方是离网光伏发电系统系统维护费用较高;另外本项目的光伏发电系统用于雨水收集和喷雾,所使用逆变器功率大,投资成本高.

中文翻译英文在线翻译文章通过对上海市杨浦区鞍山四村进行技能技术改造,计算太阳能经济效益、环境效益和对太阳能热水系统进行优化分析太阳能经济性评价中选用的指标为:单位供电成
Article IV of the Yangpu District, Shanghai, Anshan Village, a skills transformation, calculation of solar economic and environmental benefits and to optimize the analysis of solar hot water system
Economic evaluation of solar energy in the selected indicators: unit cost of supply net present value (NPV), payback period, solar system life cost savings. Evaluation indicators for the environmental benefits of energy recovery period, reducing emissions of pollutants and environmental costs. The article also carried out for solar hot water system analysis and efficiency of energy use.
Articles PV calculated the payback period is 108 years: on the one hand because the system contains energy storage devices; the other is off-grid PV power system maintenance cost is higher; other photovoltaic power generation system of the project for rainwater harvesting and spray, using inverter power, high investment cost.

Article by Shanghai, Yangpu district, Anshan four technical transformation of village skill, calculate solar economic benefit, environmental benefit and optimization analysis of solar hot water system...

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Article by Shanghai, Yangpu district, Anshan four technical transformation of village skill, calculate solar economic benefit, environmental benefit and optimization analysis of solar hot water system
Selected indicators in the economic evaluation of solar energy: unit cost of electricity, the net present value (NPV), payback period, solar system, life cost savings. Environmental benefit assessment index for energy recovery period, reducing the emissions of pollutants and environmental costs. Article on solar hot water system for the analysis of energy-use analysis and efficiency.
Article PV calculation by a 108-year payback period: on the one hand due to a system with energy storage devices; Is off-grid photovoltaic power generation system of the other party system maintenance costs higher; in addition the project for rainwater collection and solar power generation system of spray, the use of inverter power, high investment costs.

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Based on Shanghai yangpu anshan four villages skills, technical transformation calculation solar economic benefits, environmental benefits and to optimize the solar water heating system is analyzed

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Based on Shanghai yangpu anshan four villages skills, technical transformation calculation solar economic benefits, environmental benefits and to optimize the solar water heating system is analyzed
Solar energy use in economic evaluation index for: unit power supply cost and net present value (NPV), the investment capital is recovered, solar system lifetime cost saving. Environmental benefits evaluation index for energy recovery, reducing pollutant emissions and environmental costs. The article also made for solar water heating system with can analysis and efficiency analysis.
Article calculates photovoltaic energy investment payback period is 108 years: on one hand because of system contains energy storage device; The other party is away from nets (pv) power system system maintenance cost is higher; Additionally this project (pv) power system for the rainwater collection and spray, using inverter power is great, the investment cost is high.

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