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Transient simulation of heat pumps using low global warming potential refrigerants

机译:使用全球变暖潜能值低的制冷剂对热泵进行瞬态模拟

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摘要

Due to the relatively high global warming potential value of R410A, a lot of effort has been devoted to the exploration of potential refrigerants to replace R410A in heat pump applications. Natural refrigerants with single-digit global warming potential values have not yet shown readiness. Therefore, some synthetic refrigerants with global warming potential values significantly lower than R410A, such as R32 and the R32-based blend D2Y60, are getting more attention. To evaluate the transient performance of these two drop-in low-global warming potential refrigerants, two dynamic heat pump models, based on different platforms, have been developed to simulate a heat pump cycle during both steady state and transient operations. Both models include an efficiency-based compressor model, two control volume-based heat exchanger models, a control volume-based valve model, a segmented pipe model and a lumped-capacitance accumulator model. In order to speed up the simulations, accelerated refrigerant property routines were developed for R32 and D2Y60 based on National Institute of Standards and Technology's (NIST's) REFPROP database (2013). The simulation results have been compared with the published experimental data. The data includes steady-state operation data based on ASHRAE steady-state tests, and transient data from ASHRAE's cyclic operation D-test. The validation of R410A, R32 and D2Y60 cycles under steady-state operating conditions (ASRHAE A and B tests and one in-house extended' condition) shows that most of the simulations are within 5% measured values. The transient simulation results demonstrate that both models capture the dynamic performance of vapor compression cycle during start-up and shut-down.
机译:由于R410A的相对较高的全球变暖潜能值,人们已在开发潜在的制冷剂方面投入了大量精力,以替代热泵应用中的R410A。具有一位数的全球变暖潜能值的天然制冷剂尚未显示出准备状态。因此,一些具有全球变暖潜能值大大低于R410A的合成制冷剂,例如R32和基于R32的混合物D2Y60,正受到越来越多的关注。为了评估这两种直接进入地球的具有潜在低全球变暖潜能的制冷剂的瞬态性能,已经开发了两个基于不同平台的动态热泵模型,以模拟稳态和瞬态运行期间的热泵循环。两种模型都包括基于效率的压缩机模型,基于控制量的两个热交换器模型,基于控制量的阀模型,分段管模型和集总电容蓄能器模型。为了加快仿真速度,根据美国国家标准技术研究院(NIST)的REFPROP数据库(2013),为R32和D2Y60开发了加速的制冷剂性能程序。仿真结果已与已发布的实验数据进行了比较。数据包括基于ASHRAE稳态测试的稳态操作数据,以及来自ASHRAE循环操作D检验的瞬态数据。对R410A,R32和D2Y60循环在稳态工作条件(ASRHAE A和B测试以及一项内部“扩展”条件)下的验证表明,大多数模拟都在5%的测量值范围内。瞬态仿真结果表明,两个模型都可以捕获启动和关闭期间蒸汽压缩循环的动态性能。

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