利用余热和太阳能的建筑制冷装置的多准则评价方法

Bhupendra Kumar Bhatt , Wasim Akram , Osama Khan , Mohd Parvez , Shadab Ahmad
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引用次数: 1

摘要

将中央冷冻水中心纳入生态工业园区可能会促进成本削减和碳减排。然而,有多种方式为其提供动力,在成本、环境影响和技术可行性方面,每种方式都有自己的优势和劣势。因此,由于利益冲突,与生态工业园区的其他成员谈判解决方案可能具有挑战性。本研究中使用了一种多准则优化方法来比较几种由不同能量形式组成的集中式制冷机系统,以减少整个建筑设置的年度总支出。电动冷水机组、多效吸收式冷水机组和吸附式冷水机组安装在位于中央的冷冻水系统中。选择这些组件是为了使系统能够使用广泛的燃料,如电力、化石燃料、冷却器,甚至太阳能。之后,TOPSIS被用于对所有计划进行多标准排序,不仅依赖于建筑的利益,还依赖于单个冷水机组的优先级。该概念方法确保在开发用于建筑设置的冷冻水系统的整个过程中考虑成本降低和用户舒适度。在选择的9个标准中,计算出的权重为:实际容量-18%,总输入功率13%,压缩机转速-5%,EER-13%,运行电流-6%,最大起动电流-6%、流量-6%、输入功率-19%和工作重量-14%。在对冷却器进行排名时,AC Screw 355 TR VFD的性能得分最高,为0.54,其次是AC Screw 355TR STAR-DELTA,性能得分为0.51。这项新的研究将有助于建筑业主选择冷却器的最佳设计,同时保持冷却器的可持续性,这对建筑实现绿色结构模式至关重要。
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A Methodology for Multi-criteria Assessment of Chiller Plants for Building Setup Utilising Waste Heat and Solar Energy

Incorporating a central chilled water hub within an eco-industrial park may boost cost-cutting and carbon reductions. Yet, there are various ways to power it, each with its own set of advantages and disadvantages in respect of cost, environmental impact, and technological feasibility. Consequently, it might be challenging to negotiate a settlement with other members in an eco-industrial park because of their conflicting interests. A multi-criteria optimization method is used in this study to compare several centralized chiller systems that are powered by varying compositions of energy forms, to reduce total yearly expenditures for the whole complete building setup. An electric-driven chiller, multi-effect absorption chillers with several effects, and adsorption chillers are installed in the centrally located chilled water system. These components were chosen so that the system could use a wide range of fuels, such as electricity, fossil fuels, chillers, and even solar energy. Afterwards, the TOPSIS is employed to do a multiple criterion ranking on all plans, relying not only on the interests of the building but also on the priorities of individual chiller plants. The conceptual approach assures that cost reduction and user comfort are considered throughout the development of a chilled water system for the building setup. Among the nine criterions selected for the study, The weightage calculated were as follows: Actual capacity- 18%, Total Input power-13%, Speed of Compressor- 5%, EER- 13%, Running current -6%, Max Starting current-6%, Flow rate- 6%, Input power- 19% and Operating Weight- 14%. While ranking chillers AC Screw 355 TR VFD achieved highest performance score of 0.54 followed by AC Screw 355 TR STAR-DELTA with a performance score of 0.51. The novel study will aid the building owners in selecting the best design for chillers while maintaining a sustainable aspect in chillers which is important in building to attain green structure model.

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