首页> 外文期刊>Water Science and Technology >Modeling on-site wastewater treatment system performance fragility to hydroclimate stressors
【24h】

Modeling on-site wastewater treatment system performance fragility to hydroclimate stressors

机译:模拟现场废水处理系统的脆弱性以应对气候变化压力

获取原文
获取原文并翻译 | 示例
           

摘要

Increasing variability of climate-related factors, especially precipitation and temperature, poses special risks to on-site wastewater treatment systems (OWTS), which depend on subsurface saturation conditions for treatment and dispersion of wastewater. We assess OWTS fragility - the degree to which a system loses functionality - as a step to characterizing the resilience of residential wastewater treatment systems. We used the frequency and indexed severity of OWTS failures and resulting repairs to quantify fragility as a function of hydroclimate variables, including precipitation, temperature and stream flow. The frequency of each category of repair (minor, moderate and major) for 225 OWTS obtained from Boulder County public health records was modeled as a function of climate factors using a generalized linear model with a Poisson distribution link function. The results show that prolonged precipitation patterns, with monthly rainfall > 10.16 cm, influence OWTS fragility, and complete loss of OWTS functionality, requiring replacement, is impacted by high temperatures, frequency of wetter-than-normal months, and the magnitude of peak stream flow in the watershed. Weather-related covariates explained 70% of the variability in OWTS major repair data between 1979 and 2006. These results indicate that fragility arising from climate factors, and associated costs to owners, environmental and health impacts, should be considered in planning, design and operation of OWTS.
机译:与气候相关的因素(尤其是降水和温度)的可变性不断增加,给现场废水处理系统(OWTS)带来了特殊风险,该系统依赖于地下饱和条件来处理和分散废水。我们评估OWTS的脆弱性-系统失去功能的程度-作为表征住宅废水处理系统弹性的步骤。我们使用OWTS故障的频率和索引严重性以及由此产生的维修来将脆弱性量化为水文气候变量(包括降水,温度和水流)的函数。使用带有Poisson分布链接函数的广义线性模型,将从Boulder县公共卫生记录中获得的225 OWTS的每种维修频率(次要,中等和重大)建模为气候因素的函数。结果表明,长时间的降水模式(每月降水量大于10.16厘米)会影响OWTS的脆弱性,并且需要更换的OWTS功能完全丧失,这需要受到高温,比正常月份更潮湿的频率以及峰值水流的影响流在分水岭。与天气有关的协变量解释了1979年至2006年期间OWTS主要维修数据的70%的变化。这些结果表明,在规划,设计和运营中应考虑气候因素引起的脆弱性以及对所有者造成的相关成本,环境和健康影响OWTS。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号