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Cost Estimates of Electricity from a TPV Residential Heating System

机译:TPV住宅供暖系统的电力成本估算

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A thermophotovoltaic (TPV) system was built using a 12 to 20 kW_(th) methane burner which should be integrated into a conventional residential heating system. The TPV system is cylindrical in shape and consists of a selective Yb_2O_3 emitter, a quartz glass tube to prevent the exhaust gases from heating the cells and a 0.2m~2 monocrystalline silicon solar cell module which is water cooled. The maximum system efficiency of 1.0 % was obtained at a thermal input power of 12 kW_(th),. The electrical power suffices to run a residential heating system in the full power range (12 to 20 kW_(th),) independently of the grid. The end user costs of the TPV components - emitter, glass tube, photocells and cell cooling circuit - were estimated considering 4 different TPV scenarios. The existing technique was compared with an improved system currently under development, which consists of a flexible photocell module that can be glued into the boiler housing and with systems with improved system efficiency (1.5 to 5 %) and geometry. Prices of the electricity from 2.5 to 22 EURcents/kWh_(el) (excl. gas of about 3.5 EURcents/kWh), which corresponds to system costs of 340 to 3000 EUR/kW_(el,peak), were calculated. The price of electricity by TPV was compared with that of fuel cells and gas engines. While fuel cells are still expensive, gas engines have the disadvantage of maintenance, noise and bulkiness. TPV, in contrast, is a cost efficient alternative to produce heat and electricity, particularly in small peripheral units.
机译:使用12至20 kW_th的甲烷燃烧器构建了热光伏(TPV)系统,应将其集成到常规的住宅供热系统中。 TPV系统为圆柱形,由选择性的Yb_2O_3发射极,防止废气加热电池的石英玻璃管和经过水冷的0.2m〜2单晶硅太阳能电池组件组成。在12 kW_th的热输入功率下获得1.0%的最大系统效率。电力足以在独立于电网的全功率范围内(12至20 kW_th)运行住宅供暖系统。考虑到4种不同的TPV方案,估算了TPV组件的最终用户成本-发射器,玻璃管,光电池和电池冷却回路。将现有技术与目前正在开发的一种改进的系统进行了比较,该系统包括一个可粘贴到锅炉外壳中的柔性光电管模块,以及具有提高的系统效率(1.5%至5%)和几何形状的系统。计算得出的电价为2.5至22欧分/ kWh(el)(不包括约3.5欧分/ kWh的燃气),相当于340至3000欧元/ kW_(el,peak)的系统成本。将TPV的电价与燃料电池和燃气发动机的电价进行了比较。尽管燃料电池仍然很昂贵,但是燃气发动机具有维护,噪音和体积大的缺点。相比之下,TPV是产生热量和电力的具有成本效益的替代方法,特别是在小型外围设备中。

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