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Investigation of heating and cooling potential of a modular housing system for fattening pigs with integrated geothermal heat exchanger.

机译:带有集成地热热交换器的育肥猪模块化住房系统的加热和冷却潜力研究。

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摘要

Against the backdrop of global reductions in fossil fuel reserves and rising energy prices, there is increasing interest in the use of geothermal heat exchangers (GHEs) in farm animal production. The modular housing concept is a housing system with an integrated GHE area where fresh air is led through a space between slurry pit and soil to condition the supply air. This modular housing system was investigated for the first time over a one-year experimental period in Warendorf (in western Germany). During this period, the temperature of outdoor, fresh, supply and section air were recorded continuously, along with the relevant air flow volume, electricity and gas consumption. The aim of the study was to quantify the heating and cooling performance of this system under practical conditions over an extended period. This kind of housing is characterised in particular by the fact that the incoming air into the sections is subject to year-round conditioning depending of the outdoor temperature (pre-heating and pre-cooling of supply air). During the investigation period, the modular housing for 1280 fattening pigs effectively provides a heat quantity of 489,820 kWh at a mean performance of 59.7 kW as well as a cooling quantity of 18,455 kWh at a mean performance of 33.3 kW. This means that there is great potential for saving fossil fuel and energy costs as well as avoiding CO2 emissions. In contrast, the investment costs are higher than for comparable conventional pig houses.
机译:在全球化石燃料储量减少和能源价格上涨的背景下,人们对在农场动物生产中使用地热换热器(GHE)的兴趣日益浓厚。模块化外壳概念是一种带有集成GHE区域的外壳系统,在该系统中,新鲜空气被引导通过泥浆坑和土壤之间的空间以调节供应空气。在为期一年的实验期间,在德国西部的Warendorf,首次对这种模块化的住房系统进行了研究。在此期间,连续记录室外,新鲜空气,供应空气和部分空气的温度,以及相关的风量,电和燃气消耗。该研究的目的是量化在较长时期内实际条件下该系统的加热和冷却性能。这种壳体的特征尤其在于,进入室内的空气要根据室外温度(供暖的预热和预冷)进行全年的调节。在研究期间,用于1280只育肥猪的模块化外壳在平均性能59.7 kW时有效地提供了489,820 kWh的热量,在平均性能33.3 kW时提供了18,455 kWh的冷却量。这意味着节省化石燃料和能源成本以及避免CO 2 排放的巨大潜力。相比之下,投资成本要高于同类传统猪舍。

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