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Ground source heat pump (GSHP) systems for horticulture greenhouses adjacent to highway interchanges: A case study in South Korea

机译:地面源热泵(GSHP)园艺温室邻近公路交互式:韩国案例研究

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摘要

Although fuel-burning systems have long been used as climate control tools in greenhouses, their energy efficiency remains low, causing hikes in operation costs and sacrificing the quality and quantity of horticulture products, not to mention emitting greenhouse gases. To address these issues, a new geothermal energy supply model was developed for greenhouses close to highway Interchanges (ICs) or Junctions (JCTs). This paper presents a comprehensive effort made with field tests and simulations to validate the proposed model at various locations in South Korea. First, a Ground Source Heat Pump (GSHP) system - a central component of the model was installed in a greenhouse and its efficiency was evaluated and compared with other fuel-burning systems. Second, cost-benefit analyses were carried out to assess whether the proposed model was investible under four possible operation scenarios. Third, the model was simulated at twenty-four ICs and JCTs along 9 highway routes to illustrate the beneficial effects of the model's scaled-up deployment. The proposed model yielded the highest net income when a GSHP system was running at full capacity for heating and cooling. The payback periods of the model deployed at multiple sites (24 ICs and JCTs) were fewer than two years relative to AC/boiler systems. These findings indicate that the proposed model can be worthy of investment if it is appropriately operated and deployed in the field. Existing rules and policies could be used to help promote the implementation of the model.
机译:虽然燃料燃料系统长期被用作温室的气候控制工具,但它们的能效仍然低,造成运营成本的徒步旅行,牺牲园艺产品的质量和数量,更不用说喷射温室气体。为了解决这些问题,为靠近公路互换(ICS)或联系(JCTS)的温室开发了一种新的地热能供应模型。本文提出了一种综合努力,使用现场测试和模拟,以验证韩国各个地区的拟议模型。首先,一个地源热泵(GSHP)系统 - 模型的中心部件安装在温室中,并评估其效率并与其他燃料燃烧系统进行比较。其次,进行了成本效益分析,以评估拟议的模型是否在四种可能的运行方案下提供。第三,沿着9路线的二十四个IC和JCT模拟模型,以说明模型的缩放部署的有益效果。当GSHP系统以全部加热和冷却能力运行时,拟议的模型产生了最高的净收入。在多个站点(24 ICS和JCTS)部署的模型的投资回收期相对于AC /锅炉系统少于两年。这些调查结果表明,如果在现场适当运营并部署,则该模型可以值得投资。现有的规则和政策可用于帮助促进模型的实施。

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