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Preservation of in situ artefacts by local heating in earthen pit in archaeology museum in cold winter

机译:在寒冷的冬天通过考古博物馆的土坑局部加热来保存原地文物

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The environmental requirements for the appropriate preservation of artefacts are usually inconsistent with those for visitors to archaeology museums. Independently controlling the environments for preservation of artefacts and visitors has proven to be an efficient and energy-saving strategy for archaeology museums displaying funerary relics in pits. However, although such systems, would control well the preservation environment in the summer, but could be inefficient in the winter due to buoyant warm air usually remains in the upper part of the room. In this study, we argue that temperature inversion is the key factor for sustaining a stable local environment in a funerary pit to preserve artefacts. A laboratory room with a total area of 100 m(2) was constructed to simulate a large open exhibition hall. An experimental funerary pit with various heating, ventilating and air-conditioning (HVAC) systems including: a capillary radiant system, an air curtain system and an air conditioning system for human comfort; was built to determine appropriate environmental control strategy for preserving artefacts in the winter independent of the environment in the museum viewing gallery. A series of environmental control tests were conducted and each strategy was evaluated in terms of environmental stability for relic preservation in the pit and economic efficiency. The air curtain and capillary radiant coupled heating system was shown to be a feasible and energy-efficient strategy for the environment required for preservation of the historical relics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:适当保存人工制品的环境要求通常与考古博物馆参观者的环境要求不一致。对于考古博物馆在坑中展示遗物的事实,独立控制文物和游客的保存环境已被证明是一种高效节能的策略。但是,尽管这样的系统在夏季可以很好地控制保存环境,但是由于通常在房间的上部通常会保留有漂浮的温暖空气,因此冬季效率可能很低。在这项研究中,我们认为温度反转是在葬礼坑中维持稳定的局部环境以保存文物的关键因素。建造了一个总面积为100 m(2)的实验室,以模拟一个大型开放式展览厅。一个带有各种供暖,通风和空调(HVAC)系统的实验性丧葬坑,包括:毛细管辐射系统,气幕系统和人类舒适的空调系统;旨在确定适当的环境控制策略,以在冬季独立于博物馆查看画廊的环境来保存文物。进行了一系列环境控制测试,并根据坑内文物保存的环境稳定性和经济效益对每种策略进行了评估。空气幕和毛细管辐射耦合加热系统被证明是保护历史文物所需环境的可行且节能的策略。 (C)2016 Elsevier Ltd.保留所有权利。

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