首页> 外文会议>ASME power conference >EXPERIMENTAL STUDY ON A COMPACT METHANOL-FUELED REFORMER WITH HEAT REGENERATION USING CERAMIC HONEYCOMB (2~(nd) REPORT: REACTION REGION DETECTION BY A POSITIVE ION CURRENT PROBE)
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EXPERIMENTAL STUDY ON A COMPACT METHANOL-FUELED REFORMER WITH HEAT REGENERATION USING CERAMIC HONEYCOMB (2~(nd) REPORT: REACTION REGION DETECTION BY A POSITIVE ION CURRENT PROBE)

机译:使用陶瓷蜂窝致热再生的紧致甲醇燃料重整器的实验研究(2〜(ND)报告:通过正离子电流探头检测反应区域检测)

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A compact tubular-type fuel reformer was fabricated and operated under fuel-rich combustion conditions of methanol, focusing on the partial oxidation reaction (POR). Ceramic honeycomb strainer blocks were inserted in the reactor. In the authors' previous study, Case-1 of only one honeycomb block insertion showed that the reaction region formed in the downstream of the block. This block worked as a reaction stabilizer. The other condition, Case-2, was operated with the secondary honeycomb block inserted in the downstream of the reaction region in addition to the first block. This geometrical structure sandwiched the reaction region between the two blocks, and the thermal energy possessed by the exhaust gas could be regenerated to the reaction region by radiation exchange between these two blocks, which resulted in enhancing the preheating of the premixed gas. By this effect, the methanol-conversion and hydrogen-production in Case-2 were enhanced by about 10% compared to Case-1. In the present study, the reaction characteristics of the fuel reformer were investigated in detail, by detecting the location of the reaction region. Detailed temperature profiles in the streamwise direction were measured with traversable thermocouples, and positive ion current distributions corresponding to the reaction region were measured with a Langmuir probe. It was confirmed by the both measurements that there exists a reaction region right after the first honeycomb block which accompanies with sharp temperature gradients. The estimated thickness of the reaction region, however, was as wide as several millimeters to a centimeter, which is believed to be a 'mild reaction' stabilized by the first honeycomb block. In Case-2, the high-temperature region became broader compared to Case-1, which indicates that the enhancement of preheating of premixed gas was achieved by the heat regenerated from the secondary honeycomb block.
机译:紧凑的管状型燃料重整来制造和甲醇的富燃料燃烧条件下操作,重点部分氧化反应(POR)。陶瓷蜂窝过滤器块被插入到反应器中。在作者先前的研究中,只有一个蜂窝块插入的病例1表明,形成在所述块的下游的反应区。此块的工作作为反应稳定剂。其它条件,案例2,用除了第一块插在反应区域的下游的次级蜂窝块操作。这种几何结构夹在两个块之间的反应区域,和由废气所具有的热能可以通过这两个块之间的辐射热交换,这导致增强的预混合气体的预热而再生到反应区域。通过该效果,在案例2中的甲醇转化率和氢的生产进行了比较,案例1中由约10%的增强。在本研究中,燃料重整器的反应特性进行了详细的调查,通过检测反应区域的位置。在流动方向中详述的温度分布与横越热电偶进行测定,并对应于反应区域的正离子电流分布与朗缪尔探针进行测定。它是由两种测量,存在着与锐温度梯度伴随第一蜂窝块之后的反应区域权确认。反应区域的估计的厚度,然而,是一样宽几毫米至一厘米,这被认为是一个“温和的反应”由第一蜂窝块稳定。在案例2中,高温区相比案例-1,这表明预混合气体的预热的增强是通过从辅助蜂窝块再生的热实现变宽。

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