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Rainwater Harvesting in a Common Pool Resource, an Engineering Perspective

机译:工程视角下的公共水池资源中的雨水收集

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Water scarcity is a common problem throughout the Southwestern United States. Rainwater Harvesting (RWH), in urban and suburban environments, has potential to conserve existing water resources and reduce flash flooding. Currently, little is understood on how to effectively access this untapped resource. However, participants of a Common Pool Resource (CPR) can achieve resource efficiencies greater than 90 percent. An exhaustive search of published materials was conducted, coupled with communications with the Texas Water Development Board, Edwards Aquifer Authority, San Antonio Water System, and other municipal water utilities. Analysis of CPRs and their design principals reveals that only the Edwards Aquifer Authority and its associated Groundwater Districts constitutes a functioning groundwater CPR in Texas. Of the CPR design principals, only effective monitoring requires engineering. Under the correct circumstances, it would be more appropriate to view RWH as a nested enterprise inside a functioning CPR. This paper explores the possibilities and difficulties of engineering associated with RWH as a nested enterprise in a CPR, specifically RWH in the Edwards Aquifer. A CPR success depends on management rather than engineering. Success of a CPR and its nested enterprises depends on participant behavior. Economic models, based on the mathematics of game theory, help understand how participants of a CPR respond to issues of fairness and communication. A cost effective device can provide effective monitoring of RWH performance. Once monitoring is provided, RWH can be integrated into existing cooperative CPR institutions.
机译:缺水是整个美国西南部的普遍问题。在城市和郊区环境中的雨水收集(RWH)具有保存现有水资源并减少山洪泛滥的潜力。当前,对于如何有效地访问未开发的资源知之甚少。但是,公共池资源(CPR)的参与者可以实现90%以上的资源效率。对出版的材料进行了详尽的搜索,并与德克萨斯州水务发展委员会,爱德华兹含水层管理局,圣安东尼奥自来水公司和其他市政自来水公司进行了沟通。对心肺复苏术及其设计原则的分析表明,只有爱德华兹含水层管理局及其相关的地下水区构成了德克萨斯州有效的地下水心肺复苏术。在CPR设计原则中,只有有效的监视才需要工程。在正确的情况下,将RWH视为功能正常的CPR中的嵌套企业会更合适。本文探讨了与RHH相关的工程的可能性和困难,因为RWH是CPR中的嵌套企业,特别是Edwards Aquifer中的RWH。 CPR的成功取决于管理而不是工程。 CPR及其嵌套企业的成功取决于参与者的行为。基于博弈论数学的经济模型有助于了解CPR参与者如何应对公平和沟通问题。具有成本效益的设备可以提供对RWH性能的有效监控。提供监视后,RWH可以集成到现有的合作CPR机构中。

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