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首页> 外文期刊>Hydrology and Earth System Sciences >The Hydrological Open Air Laboratory (HOAL) in Petzenkirchen: a hypothesis-driven observatory
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The Hydrological Open Air Laboratory (HOAL) in Petzenkirchen: a hypothesis-driven observatory

机译:Petzenkirchen的水文露天实验室(HOAL):假设驱动的天文台

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Hydrological observatories bear a lot of resemblance to the more traditional research catchment concept, but tend to differ in providing more long-term facilities that transcend the lifetime of individual projects, are more strongly geared towards performing interdisciplinary research, and are often designed as networks to assist in performing collaborative science. This paper illustrates how the experimental and monitoring set-up of an observatory, the 66 ha Hydrological Open Air Laboratory (HOAL) in Petzenkirchen, Lower Austria, has been established in a way that allows meaningful hypothesis testing. The overarching science questions guided site selection, identification of dissertation topics and the base monitoring. The specific hypotheses guided the dedicated monitoring and sampling, individual experiments, and repeated experiments with controlled boundary conditions. The purpose of the HOAL is to advance the understanding of water-related flow and transport processes involving sediments, nutrients and microbes in small catchments. The HOAL catchment is ideally suited for this purpose, because it features a range of different runoff generation processes (surface runoff, springs, tile drains, wetlands), the nutrient inputs are known, and it is convenient from a logistic point of view as all instruments can be connected to the power grid and a high-speed glassfibre local area network (LAN). The multitude of runoff generation mechanisms in the catchment provides a genuine laboratory where hypotheses of flow and transport can be tested, either by controlled experiments or by contrasting sub-regions of different characteristics. This diversity also ensures that the HOAL is representative of a range of catchments around the world, and the specific process findings from the HOAL are applicable to a variety of agricultural catchment settings. The HOAL is operated jointly by the Vienna University of Technology and the Federal Agency for Water Management and takes advantage of the Vienna Doctoral Programme on Water Resource Systems funded by the Austrian Science Funds. The paper presents the science strategy of the set-up of the observatory, discusses the implementation of the HOAL, gives examples of the hypothesis testing and summarises the lessons learned. The paper concludes with an outlook on future developments.
机译:水文观测站与更传统的研究集水区概念非常相似,但是在提供更多的长期设施方面具有不同之处,这些设施可以超越单个项目的生命周期,更适合进行跨学科研究,并且通常被设计为协助进行合作科学。本文说明了如何建立天文台的实验和监视设施,即位于下奥地利州Petzenkirchen的66公顷水文露天实验室(HOAL),该方法可以进行有意义的假设检验。总体科学问题指导选址,论文主题的确定和基础监测。具体的假设指导了专用的监视和采样,单独的实验以及在受控边界条件下的重复实验。 HOAL的目的是加深对与水有关的流动和运输过程的了解,这些过程涉及小流域的沉积物,营养物和微生物。 HOAL集水区非常适合此目的,因为它具有一系列不同的径流生成过程(地表径流,泉水,瓷砖排水沟,湿地),养分输入已知,从后勤角度看,这很方便仪器可以连接到电网和高速玻璃纤维局域网(LAN)。流域中大量的径流生成机制提供了一个真正的实验室,可以通过控制实验或通过对比不同特征的子区域来检验流量和运输的假设。这种多样性还确保了HOAL代表了世界范围内的一系列流域,并且HOAL的特定过程发现适用于各种农业流域环境。 HOAL由维也纳工业大学和联邦水资源管理局联合运营,并利用了由奥地利科学基金资助的维也纳水资源系统博士计划。本文介绍了天文台设置的科学策略,讨论了HOAL的实现,给出了假设检验的示例,并总结了所汲取的经验教训。本文以对未来发展的展望作为结束。

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