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Experimental study on steady state heating performance of a multi-type heat pump system for finding the optimum control variable

机译:寻找最佳控制变量的多功能热泵系统稳态加热性能的实验研究

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摘要

This paper describes the steady state heating performance of a multi-type heat pump system. The operation range of such systems has extended to cover various situations, and there is a requirement for systems that provide sufficient performance in those situations. Thus, many researchers have made efforts to design a controller or develop control logic that ensures optimal operation. In a multi-type heat pump, effective control of individual indoor units is necessary for satisfying heating or cooling demands. In such systems, a successfully designed controller must consider cross-coupling effects among indoor units during alteration of control variables such as expansion valve opening and compressor speed. Thus, we investigated cross-coupling effects among indoor units under various working conditions to help determine an optimum and effective control variable. The heating performance and the relationship among the operating variables of the multi-type heat pump system with R410A indicated that the temperature of the indoor units' secondary fluid was a suitable control variable.
机译:本文介绍了一种多类型热泵系统的稳态加热性能。这样的系统的操作范围已经扩展到涵盖各种情况,并且需要在这些情况下提供足够性能的系统。因此,许多研究人员已努力设计控制器或开发可确保最佳操作的控制逻辑。在多类型的热泵中,为了满足供暖或制冷需求,必须有效控制各个室内机。在这样的系统中,成功设计的控制器必须在更改控制参数(例如膨胀阀开度和压缩机速度)的过程中考虑室内机之间的交叉耦合效应。因此,我们研究了在各种工作条件下室内机之间的交叉耦合效应,以帮助确定最佳和有效的控制变量。带有R410A的多类型热泵系统的加热性能和操作变量之间的关系表明,室内机二次流体的温度是合适的控制变量。

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