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Energy Production Requires Energy Input to Digesters - A Review of Digester Mixing and Development of Improved Digester Mixing Design Methodologies

机译:能源生产需要对消化器的能源输入 - 蒸煮器混合和改进的消化不检设计方法的开发综述

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It is widely recognized that good mixing is important to successful operation and performance of anaerobic digestion. However, the wastewater industry has lacked a holistic approach to design and operations that account not only the for the need to have good blending, but also recognize the role of mixing in preventing grit deposition, and more recently the role of mixing in prevention of frequent rapid volume expansion and maintaining active volume by reducing gas holdup. Designers have relied on rules of thumb and past experience rather than any developed science around good design practices. In the last couple of decades, tracer studies and more recently, computational fluid dynamic (CFD) modeling have been used as design or analytical tools, however, these have focused strictly on blending and predicting active volume. There has been little effort focused on the other important aspects of digester mixing, including a rational analysis of how mixing configuration plays into each of these important aspects. The goal of this paper is to synthesize the theory, data, and observations generated to date with respect to these important mixing design questions and propose design calculation methodologies to help optimize mixing design and thereby assure optimum digester performance. These proposed design methodologies are intended to help design engineers and operators better understand the mechanisms at play and which can be controlled in designing and operating digesters.
机译:众所周知,良好的混合对于成功运行和厌氧消化的性能是重要的。然而,废水行业缺乏整体方法来设计和运营,不仅需要具有良好混合的需要,而且还认识到在预防砂砾沉积中混合的作用,以及最近混合在预防频繁的作用通过减少气体储存来快速膨胀和维持活性体积。设计师依赖于拇指和过去的经验规则,而不是任何发发的科学围绕良好的设计实践。在过去几十年中,示踪剂研究和最近,计算流体动态(CFD)建模已被用作设计或分析工具,然而,这些术语严格集中在混合和预测活性体积上。几乎没有努力,专注于蒸煮器混合的其他重要方面,包括对混合配置如何融入这些重要方面的每个重要方面的合理分析。本文的目标是综合与这些重要混合设计问题迄今为止生成的理论,数据和观察结果,并提出了设计计算方法,以帮助优化混合设计,从而确保最佳的消化蒸煮性能。这些提出的设计方法旨在帮助设计工程师和操作员更好地了解游戏的机制,可以在设计和操作消化器中控制。

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