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首页> 外文期刊>Applied Energy >High efficient solar parabolic trough receiver reactors combined with phase change material for thermochemical reactions
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High efficient solar parabolic trough receiver reactors combined with phase change material for thermochemical reactions

机译:高效的太阳能抛物槽接收器反应器,结合相变材料进行热化学反应

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To alleviate the effect of solar radiation fluctuation on solar thermochemical reaction, phase change material (PCM) is applied in solar-chemical reactor to buffer the temperature vibration induced by solar radiation fluctuation. In order to comprehensively study the effect of PCM on chemical reactor, a two-dimensional model was employed to compare the steady performance of 3 different kinds of solar parabolic trough receiver reactors (SPTRR): without PCM (SPTRRO), with PCM near the outer wall (SPTRR1) and with PCM in the center (SPTRR2). Then, the transient performance of three SPTRRs under continuously pulsed solar radiation and real solar radiation fluctuation are, respectively, analyzed. The results showed that comparable chemical performance can be achieved for all three different SPTRRs although the amount of catalysts in SPTRR1 and SPTRR2 are 13.2% less than that in SPTRRO. When the time interval of cloud presence is 3 min, compared with SPTRRO, the averaged methanol conversions in SPTRR1 and SPTRR2 are, respectively, improved by 10.5 and 9.8% and production selectivity (higher H-2/CO) is better. And when under a real solar radiation fluctuation, compared to SPTRRO, the averaged methanol conversions in SPTRR1 and SPTRR2 are relatively improved by about 10.7% and 7.2%. SPTRR1 can more effectively attenuate the effect of solar radiation fluctuation and shows better chemical performance than SPTRR2.
机译:为了减轻太阳辐射波动对太阳热化学反应的影响,在太阳化学反应器中采用相变材料(PCM)来缓和太阳辐射波动引起的温度振动。为了全面研究PCM对化学反应器的影响,采用二维模型比较了3种不同类型的太阳能抛物槽接收器反应堆(SPTRR)的稳态性能:无PCM(SPTRRO),PCM靠近外部壁(SPTRR1),并且PCM位于中间(SPTRR2)。然后,分别分析了三个SPTRR在连续脉冲太阳辐射和实际太阳辐射波动下的瞬态性能。结果表明,尽管SPTRR1和SPTRR2中的催化剂用量比SPTRRO中的催化剂用量少13.2%,但对于所有三个不同的SPTRR都可以实现相当的化学性能。当存在云的时间间隔为3分钟时,与SPTRRO相比,SPTRR1和SPTRR2的平均甲醇转化率分别提高了10.5和9.8%,生产选择性(H-2 / CO更高)更好。与SPTRRO相比,在真实的太阳辐射波动下,SPTRR1和SPTRR2的平均甲醇转化率相对提高了约10.7%和7.2%。 SPTRR1可以比SPTRR2更有效地减弱太阳辐射波动的影响并显示出更好的化学性能。

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