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Simulation of the wastewater temperature in sewers with TEMPEST

机译:用TEMPEST模拟下水道中的废水温度。

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摘要

TEMPEST is a new interactive simulation program for the estimation of the wastewater temperature in sewers. Intuitive graphical user interfaces assist the user in managing data, performing calculations and plotting results. The program calculates the dynamics and longitudinal spatial profiles of the wastewater temperature in sewer lines. Interactions between wastewater, sewer air and surrounding soil are modeled in TEMPEST by mass balance equations, rate expressions found in the literature and a new empirical model of the airflow in the sewer. TEMPEST was developed as a tool which can be applied in practice, i.e., it requires as few input data as possible. These data include the upstream wastewater discharge and temperature, geometric and hydraulic parameters of the sewer, material properties of the sewer pipe and surrounding soil, ambient conditions, and estimates of the capacity of openings for air exchange between sewer and environment. Based on a case study it is shown how TEMPEST can be applied to estimate the decrease of the downstream wastewater temperature caused by heat recovery from the sewer. Because the efficiency of nitrification strongly depends on the wastewater temperature, this application is of practical relevance for situations in which the sewer ends at a nitrifying wastewater treatment plant.
机译:TEMPEST是一种新的交互式仿真程序,用于估算下水道中的废水温度。直观的图形用户界面可帮助用户管理数据,执行计算和绘制结果。该程序计算下水道中废水温度的动态和纵向空间分布。在TEMPEST中,通过质量平衡方程,文献中发现的速率表达式以及下水道中气流的新经验模型,对废水,下水道空气与周围土壤之间的相互作用进行了建模。 TEMPEST是作为一种可在实践中应用的工具而开发的,即它需要尽可能少的输入数据。这些数据包括上游废水排放和温度,下水道的几何和水力参数,下水道和周围土壤的材料特性,环境条件,以及下水道与环境之间空气交换的开口能力的估计。基于案例研究,显示了如何将TEMPEST应用于估算由下水道的热量回收所导致的下游废水温度的下降。由于硝化效率在很大程度上取决于废水温度,因此该应用对于下水道在硝化废水处理厂终止的情况具有实际意义。

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