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Investigation of a Flow Modulation System for Siphonic Roof Drainage Systems

机译:虹吸屋面排水系统流量调节系统的研究

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Siphonic roof drainage systems (SRDS’s) have been widespread used now for approximately 40 years and are an efficient method of removing rainwater rapidly from roofs. SRDS’s are designed to run full-bore, resulting in sub-atmospheric system pressures with high hydraulic driving heads and higher system flow velocities than conventionally guttered systems. Hence, SRDS’s normally require far fewer downpipes, and the depressurised conditions also mean that much of the collection pipework can be routed at a high level, thus reducing the extent of any underground pipework. But, they work properly at only one roof run-off rate and therefore suffer from sizing and operational problems including noise and vibration which limit their performance and adoption rate. Climate change is creating situations where normal ranges of rainfall intensity are being frequently exceeded, so the typical:storm ratios (rTS) are large increasing. Current SRDS’s typically operate within a small rTS range of 2. This may have an impact on the future uptake of SRDS’s. This paper describes the development of a novel SRDS which includes a small mobile cap at the roof of outlet appears to offer benefits and avoids sizing problems associated with current SRDS’s. The cap has the potential to avoid noise associated with making and breaking siphonic action through flow modulation. Laboratory scale tests demonstrate the basic feasibility of the cap system and indicate that the cap functions reliably. This research received no specific grant from any funding agency in the public, commercial, or not-for-profit sectors. Basic on sizing and design optimiza-tion factors are suggested. The rTS range is increased from approximately 2 to approximately 6.
机译:虹吸式屋顶排水系统(SRDS)现已广泛使用了大约40年,是一种快速去除屋顶雨水的有效方法。 SRDS旨在全口径运行,与传统的沟槽系统相比,具有高液压驱动头和更高的系统流速,可产生低于大气压的系统压力。因此,SRDS通常只需要很少的落水管,而且减压条件也意味着许多收集管道可以在较高的水平上布设,从而减少了地下管道的范围。但是,它们只能以一个屋顶径流率正常工作,因此会受到尺寸和操作问题的困扰,包括噪音和振动,这限制了它们的性能和采用率。气候变化正在造成经常超过降雨强度正常范围的情况,因此典型的:暴风雨比率(rTS)大大增加。当前的SRDS通常在2的较小rTS范围内运行。这可能会对SRDS的未来使用产生影响。本文介绍了一种新型SRDS的开发,该产品在插座顶部包括一个小的移动盖,似乎可以带来很多好处,并且可以避免与当前SRDS相关的尺寸问题。盖有可能避免与通过流量调节产生和破坏虹吸作用相关的噪声。实验室规模测试证明了瓶盖系统的基本可行性,并表明瓶盖功能可靠。这项研究未从公共,商业或非营利部门的任何资助机构获得任何具体资助。建议确定尺寸和设计优化因素的基础。 rTS范围从大约2增加到大约6。

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