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Theoretical Studies on Start-Up Characteristics of a High-Pressure Generator for LiBr Absorption Chiller

机译:溴化锂吸收式制冷机高压发生器启动特性的理论研究

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Dynamic models and simulation of a gas-fired bouble-effect lithium bromide absorption chiller and heat transfer character of high pressure generator are presented. The dynamic mathematical models of each component, as well as the whole system of the absorption chiller, have been established. Researches are done to study on the startup characteristics of a 106 kW chiller through utilizing the dynamic model of the whole system. It can be discovered that the initial mass of LiBr solution in the high pressure generator has an apparent effect on the performance of the high pressure generator and the whole unit in the startup. When the lithium bromide solution mass is reduced 15% than the designed value, the delay time of the high pressure generator is shortened as well as the first stable time in the startup and the crystallization will not occur, which surely will be beneficial to the performance of the unit The researches can provide with important reference for the design of optimization as well as technical support for on-line control of absorption chiller.
机译:给出了燃气式沸腾效应溴化锂吸收式制冷机的动力学模型和仿真,以及高压发生器的传热特性。建立了每个部件的动态数学模型,以及吸收式制冷机的整个系统。利用整个系统的动力学模型,对106 kW冷水机组的启动特性进行了研究。可以发现,高压发生器中的溴化锂溶液的初始质量对高压发生器和整个装置在启动时的性能有明显的影响。当溴化锂溶液质量比设计值减少15%时,高压发生器的延迟时间缩短,启动时的第一稳定时间也不会发生结晶,这无疑将对性能有所帮助该装置的研究可以为吸收式制冷机的优化设计以及在线控制提供技术参考。

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