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Heat as a natural, low-cost tracer in mine water systems: the attenuation and retardation of thermal signals in a reducing and alkalinity producing treatment system (RAPS)

机译:作为矿井水系统中天然的低成本示踪剂的热量:还原和碱度生成处理系统(Raps)中热信号的衰减和延迟

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摘要

A combined chemical and thermal tracer test has been attempted, using iced water and sodium chloride, in the compost and limestone Tan-y-Garn Reducing and Alkalinity Producing System (RAPS), designed to treat iron-rich net acidic mine water in South Wales, UK. The applied thermal signal was, however, inadequate to produce a temperature anomaly in the output water, being overwhelmed by the summer solar/atmospheric daytime heat input to the lagoon. Nevertheless, natural diurnal temperature signals could be discerned in the outlet water, being retarded relative to the input signal. Thermal retardation could be calculated as approximately 2.3 to 2.9, and various estimates of the RAPS bulk volumetric heat capacity tend to fall between 2 and 3 MJ m-3 K-1. The natural diurnal thermal signal potentially provides a low cost substitute for artificial tracers in estimating RAPS retention times.
机译:已尝试在堆肥和石灰石Tan-y-Garn减量和碱度生产系统(RAPS)中使用冰水和氯化钠进行化学和热示踪剂联合测试,该系统旨在处理南威尔士的富铁净酸性矿井水,英国。但是,所施加的热信号不足以在输出水中产生温度异常,而夏季的太阳/大气白天向泻湖输入的热量使这种信号不堪重负。然而,可以在出水中辨别出自然的昼夜温度信号,相对于输入信号而言是自然的。可以计算出约2.3到2.9的热阻滞,而RAPS体积热容的各种估计值往往落在2-3 MJ m-3 K-1之间。在估算RAPS保留时间时,自然的昼间热信号有可能为人造示踪剂提供低成本的替代品。

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