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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydraulic characteristics simulation of an innovative self-agitation anaerobic baffled reactor (SA-ABR)
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Hydraulic characteristics simulation of an innovative self-agitation anaerobic baffled reactor (SA-ABR)

机译:新型自搅拌厌氧折流板反应器(SA-ABR)的水力特性模拟

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摘要

An investigation was conducted on a self-agitation anaerobic baffled reactor (SA-ABR) with agitation caused solely by the release of stored gas. The compound in the reactor is mixed without the use of any mechanical equipment and electricity. The computational fluid dynamics (CFD) simulation used to provide details of the flow pattern and information about the agitation process and a solid basis for design and optimization purposes. Every self-agitation cycle could be separated into the pressure energy storage process, the exergonic process and the buffer stage. The reactor is regarded as the combination of continuous stirred tank reactor and a small plug flow reactor. The liquid level and diffusion varies widely depending on the length of the U-tube. The compound transition phenomenon in the 1st chamber mainly occurs during the energy exergonic process and buffer stage. The fluid-diffusion in the 3rd and 4th chambers mainly happens after the buffer period.
机译:对自搅动的厌氧折流板反应器(SA-ABR)进行了调查,发现搅动完全是由释放出的气体引起的。在不使用任何机械设备和电力的情况下混合反应器中的化合物。计算流体动力学(CFD)仿真用于提供流模式的详细信息以及有关搅拌过程的信息,并为设计和优化目的提供坚实的基础。每个自激周期可以分为压力能量存储过程,运动过程和缓冲阶段。该反应器被认为是连续搅拌釜反应器和小型活塞流反应器的组合。液位和扩散取决于U型管的长度而变化很大。第一室中的复合过渡现象主要发生在能量消耗过程和缓冲阶段。第三腔和第四腔中的流体扩散主要发生在缓冲期之后。

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