Vollertsen J, Nielsen A H, Yang W, Hvitved-Jacobsen T
Aalborg University, Section of Environmental Engineering, Sohngaardsholmsvej 57, 9000 Aalborg, Denmark.
Water Sci Technol. 2005;52(3):171-80.
Transformations of organic matter, nitrogen and sulfur in sewers can be simulated taking into account the relevant transformation and transport processes. One objective of such simulation is the assessment and management of hydrogen sulfide formation and corrosion. Sulfide is formed in the biofilms and sediments of the water phase, but corrosion occurs on the moist surfaces of the sewer gas phase. Consequently, both phases and the transport of volatile substances between these phases must be included. Furthermore, wastewater composition and transformations in sewers are complex and subject to high, natural variability. This paper presents the latest developments of the WATS model concept, allowing integrated aerobic, anoxic and anaerobic simulation of the water phase and of gas phase processes. The resulting model is complex and with high parameter variability. An example applying stochastic modeling shows how this complexity and variability can be taken into account.
考虑到相关的转化和传输过程,可以对下水道中有机物、氮和硫的转化进行模拟。这种模拟的一个目标是评估和管理硫化氢的形成及腐蚀情况。硫化物在水相的生物膜和沉积物中形成,但腐蚀发生在下水道气相的潮湿表面。因此,必须同时考虑这两个相以及挥发性物质在这些相之间的传输。此外,下水道中的废水成分和转化过程很复杂,且具有很高的自然变异性。本文介绍了WATS模型概念的最新进展,该模型能够对水相和气相过程进行综合的好氧、缺氧和厌氧模拟。所得模型很复杂,且参数变异性高。一个应用随机建模的例子展示了如何考虑这种复杂性和变异性。