首页> 外文会议>Joint AIAA/ASME thermophysics and heat transfer conference >Optimization of Heat Exchanger of Vuilleumier Heat Pump using Teaching-Learning Based Algorithm
【24h】

Optimization of Heat Exchanger of Vuilleumier Heat Pump using Teaching-Learning Based Algorithm

机译:基于教学学习算法的Vuilleumier热泵热交换器优化

获取原文

摘要

Air conditioning, space heating, and water heating makeup the largest proportion of building energy use in the U.S., making this segment an enormously rich opportunity for energy and cost savings. Devices like Vuilleumier Heat Pump (VHP), which can provide space heating, cooling and water heating at the same time, have very high efficiency compared to conventional air conditioners, space heaters and water heaters available in the market. The heat exchangers of a VHP play a significant role, and it affects the performance of a VHP significantly. Multi-Objectives such as reducing the pressure drop and dead volume of the working fluid in the heat exchangers should be considered while designing. The primary objective of this thesis is to develop an optimization tool using Teaching-Learning based optimization (TLBO) algorithm, which considers minimizing dead volume and pressure drop as the objectives. A design process starts by assuming some random desired values for few unknowns and evaluating the rest of the parameters based on those assumptions. But, quite often, it is apparent that, as the design is refined, there might be a huge difference between initially assumed values and current design parameters. This process consumes time, effort and resources. As an alternative, implementation of optimization techniques such as TLBO over the design variables in a specified range, which can give a set of optimal solutions in very less time, is discussed in this thesis. This work shows the application of TLBO and the process of converging to an optimal solution. The results obtained by implementing TLBO for a VHP heat exchanger are then compared to the existing design. A tool like this can be used at the start of design process so that lot of time and resources can be saved in the development cycle. This process can also be used for optimizing the existing design as well.
机译:空调,空间加热和水加热构成美国建筑能源使用的最大比例,使得这一分部对能源和成本节约的极具丰富的机遇。与传统的空调,空间加热器和水加热器相比,vuilleumier热泵(VHP)等设备可以提供空间加热,冷却和水加热。 VHP的热交换器发挥着重要作用,它显着影响了VHP的性能。在设计时,应考虑降低热交换器中工作流体的压降和死体积的多目标。本文的主要目的是使用基于教学的优化(TLBO)算法开发优化工具,该算法考虑最小化死量和压降作为目标。设计过程通过假设一些未知数的一些随机期望值来开始,并根据这些假设评估其余的参数。但是,通常情况下,显而易见的是,随着设计的精制,初始假设的值和当前设计参数之间可能存在巨大差异。这个过程消耗时间,努力和资源。作为替代方案,在指定范围内,在设计变量中的优化技术(如TLBO)的实现,在本文中可以在更少的时间内给出一组最佳解决方案。这项工作显示了TLBO的应用和融合到最佳解决方案的过程。然后将通过实施用于VHP热交换器的TLBO而获得的结果与现有设计相比。这样的工具可以在设计过程的开始时使用,因此可以在开发周期中保存大量的时间和资源。该过程还可用于优化现有设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号