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CO_2 GASCOOLER PERFORMANCE ON-SITE

机译:CO_2汽力冷却器在现场性能

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摘要

The efficiency for most CO_2 supermarket refrigeration systems rely on a cost optimal rejection of the heat to the ambient air. This is true for a larger part of the year, even for systems with heat recovery. A critical part of this process is the heat exchanger in the form of an air-cooled gas cooler and the control of the pressure in this component. In order to gain a better understanding of the relation between the selection of the gas cooler relying on manufacturer data and the performance in the actual installation over the year, an analysis has been performed on data obtained from a Danish supermarket. In addition to the measuring points in the advanced control system, the supermarket has been equipped with coriolis mass flow meters for accurate measurement of the refrigerant flow. By mapping the performance at design conditions and more importantly at off-design conditions, a better understanding of the parameters for a cost effective selection of the gas cooler is obtained. The next step is a generic model of the gas cooler performance calibrated with the data in order to aid future simulations of system performance. A draft for this work is presented. The performance of a standard gas cooler in a small supermarket installation has been mapped. The mapping shows a wide range for dt or the difference between the air inlet and CO_2 outlet temperature over the full range of the load. The mean value for the dt is higher than expected from the manufacturer data. The average values for intervals of mass flow and inlet air temperature enable a fit for the UA value of the heat exchanger. The UA value predicts mean values for dt with high accuracy for both sub and transcritical operation. The accuracy is dependent on cyclic variations of the load and the geometry of the heat exchanger. Future work aims at generalising these results to other geometries and flow regimes.
机译:大多数CO_2超市制冷系统的效率依赖于将热量的成本最佳地抑制到环境空气。这对于今年的较大部分是如此,即使是具有热量恢复的系统。该方法的关键部分是气冷气体冷却器形式的热交换器和该部件中的压力的​​控制。为了更好地了解依托制造商数据的依靠制造商数据的储气机之间的关系以及在年内实际安装中的性能之间的关系,对从丹麦超市获得的数据进行了分析。除了先进控制系统中的测量点外,超市还配备了科里奥利质量流量计,可精确测量制冷剂流量。通过在设计条件下映射性能,更重要的是在非设计条件下,获得了更好地理解用于成本有效地选择气体冷却器的参数。下一步是使用数据校准的气体冷却器性能的通用模型,以帮助未来的系统性能模拟。提出了这项工作的草案。在小型超市安装中的标准气体冷却器的性能已被映射。映射显示了DT的宽范围或空气入口与CO_2出口温度之间的载荷在负载范围内的差异。 DT的平均值高于制造商数据的预期。质量流量和入口空气温度间隔的平均值使得适合热交换器的UA值。 UA值预测DT的平均值,具有高精度,适用于Sub和跨临界操作。精度取决于负载的循环变化和热交换器的几何形状。未来的工作旨在揭示这些结果的其他几何和流动制度。

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