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線聚焦型太陽(yáng)能二氧化碳發(fā)生器性能研究
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國(guó)家自然科學(xué)基金項(xiàng)目(51263013)、內(nèi)蒙古自治區(qū)科技創(chuàng)新引導(dǎo)項(xiàng)目(2017)和內(nèi)蒙古工業(yè)大學(xué)科學(xué)研究基金項(xiàng)目(X201708)


Performance of Trough Solar-concentrating Carbon Dioxide Generator
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    摘要:

    研究了一種線聚焦型太陽(yáng)能二氧化碳發(fā)生器。分別在跟蹤及非跟蹤工況下,在呼和浩特地區(qū)測(cè)試并分析了系統(tǒng)的集熱與產(chǎn)氣性能。確定了系統(tǒng)的最佳運(yùn)行方式,提出了氣損率和產(chǎn)氣能力2個(gè)系統(tǒng)性能評(píng)價(jià)指標(biāo)。測(cè)試結(jié)果表明,跟蹤較非跟蹤工況,反應(yīng)器內(nèi)腔空曬最高溫度、悶曬最高水溫、最高集熱效率分別提升16.30%、12.44%、94.50%;系統(tǒng)最佳運(yùn)行工況確定為跟蹤式。在產(chǎn)氣原料分解溫度范圍內(nèi),系統(tǒng)集熱效率為31.80%;測(cè)試階段系統(tǒng)氣損率為4.50%;當(dāng)太陽(yáng)直接輻照度在650~850W/m2范圍內(nèi)變化時(shí),系統(tǒng)產(chǎn)氣能力隨太陽(yáng)直接輻照度呈正相關(guān)變化。基于系統(tǒng)產(chǎn)氣能力的變化規(guī)律,可計(jì)算不同規(guī)模線聚焦型太陽(yáng)能二氧化碳發(fā)生器的具體結(jié)構(gòu)參數(shù)。

    Abstract:

    A new type of trough solarconcentrating carbon dioxide generator was designed. The heat collection and gas production performance of the generator was tested under the tracking and nontracking conditions in Huhhot, and the changing rules of the reactor cavity stagnation temperature, integral water temperature and heatcollecting efficiency with the irradiance at the daylight opening were analyzed, the optimal operation mode of the system was determined and two system performance evaluation indexes of gas loss rate and gas production capacity were proposed. The test results showed that the determination coefficient of the fitting formulas were both greater than 0.998 after the calibration with two thermocouples, and the fitting function had high accuracy. During the test, the fitting curve equation was used to correct each test temperature value. The No.1 thermocouple tested the generator cavity temperature, which was installed in the center of the cavity. The No.2 thermocouple was installed close to the outer wall to test the temperature of the outer wall of the generator. Under the two conditions, the change rules of the system performance parameters were similar, but there were also features in common. The temperature of each test point and gas production capacity had positive correlation with the irradiance. The heat generation efficiency of the system was mainly affected by the initial temperature of the heat storage medium, and the higher the initial temperature of the heat storage medium was, the lower the heatcollecting efficiency of the system would be. When the temperature of the heat storage medium approached the limit temperature, the higher solar irradiance was needed to supply the system heat loss and then continue to enhance its heat storage. Under tracking and nontracking conditions, the maximum stagnation temperatures of the reactor were 107℃ and 92℃, respectively. Compared with the nontracking conditions, the maximum stagnation temperatures of the reactor cavity was increased by 1630% under tracking conditions. Under the conditions of tracking and nontracking, the maximum integral water temperatures of the reactor were up to 94℃ and 83.6℃ and the highest heat concentration efficiency were 38.90% and 20.00%, respectively. Compared with the nontracking conditions, the maximum water temperature in the reactor cavity was increased by 12.44% and the maximum heat concentration efficiency of the system was increased by 94.50% under tracking condition. During the test period, the minimum water temperature in the reactor cavity was 62.4℃, which was higher than the complete decomposition temperature of the reaction raw materials. Integral temperature of reactor was less influenced by ambient temperature. The best operation condition of the system was determined to be tracking model. The heatcollecting efficiency of the system was 31.80% within the gas generation temperature range, and the gas loss rate was 450% during the whole gas production process. When the solar direct irradiance was ranged from 650W/m2 to 850W/m2, the gas generation capacity of the system showed a positive correlation with the solar direct irradiance lower than 700W/m2, the gas production capacity gradually tended to be steady, and the gas loss approached the limit value, and the decomposition speed tended to be stable. The relationship between gas production capacity and solar direct irradiance was obtained. Based on the gas production capacity, the determination method of specific structural parameters of line focus solar carbon dioxide generator under the best mode of operation can be determined. The research result was of great significance for promoting the standardized application of the line focus solar carbon dioxide generator.

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郭 梟,張遠(yuǎn)巍,馮志誠(chéng),王 飛,田 瑞.線聚焦型太陽(yáng)能二氧化碳發(fā)生器性能研究[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2018,49(9):285-294. GUO Xiao, ZHANG Yuanwei, FENG Zhicheng, WANG Fei, TIAN Rui. Performance of Trough Solar-concentrating Carbon Dioxide Generator[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(9):285-294.

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  • 收稿日期:2018-03-16
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  • 在線發(fā)布日期: 2018-09-10
  • 出版日期: 2018-09-10