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Empirical approach to main drain system design and solid transportation performance in buildings

机译:建筑物主排水系统设计和固体运输性能的经验方法

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摘要

Water-saving facilities were constructed in response to the sustainability and global issues all over the world. However, the performance of drainage systems must be ensured as the volume of flush water is reduced. Otherwise, it might cause sanitary problems to indoor environments and interrupt building functions. According to the methodology of investigation and observation, this paper categorized parameters that dominate the solid transportation performance of main drains. An empirical experiment was executed to clarify the quantitative influence of these parameters. A calculation model for estimating the boundary condition of main drain design is conducted. Furthermore, an estimation interface is validated and proposed as an assessment tool for practical application. Practical implication: This paper offers an evaluation tool by statistic methodology to ensure solid transportation performance. An estimating model and regulation proposal of solid transportation in main drains of buildings that can guide the designer and engineer to confirm the performance of drainage system is validated and proved to be practicable. Furthermore, this research conducted an estimation interface to validate the solid transportation performance, which can offer an assessment tool for practical application. The results can contribute to building code guidelines and lead to new technical development of building drainage systems.
机译:节水设施是为响应全球可持续性和全球性问题而建造的。但是,必须减少排水系统的性能,因为要减少冲洗水的量。否则,可能会对室内环境造成卫生问题并中断建筑功能。根据调查和观察的方法,对主要排水沟的固体运输性能起决定作用的参数进行了分类。进行了一项实验性实验以阐明这些参数的定量影响。建立了估算主排水设计边界条件的计算模型。此外,评估接口已得到验证,并被建议作为实际应用的评估工具。实际意义:本文通过统计方法提供了一种评估工具,以确保可靠的运输性能。可以指导设计者和工程师确认排水系统性能的建筑物主要排水沟固体运输估算模型和调控建议是可行的。此外,本研究进行了一个评估接口以验证固体运输性能,这可以为实际应用提供评估工具。结果可以有助于建筑规范指南,并导致建筑排水系统的新技术发展。

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