通过蒸发式冷凝器提高蒸汽压缩冷却系统效率的概述

Haider Mumtaz Hussain, Salman Hashim Hammdi
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引用次数: 0

摘要

本文探讨了在能源消耗不断上升的背景下节约能源的意义及其对经济增长的影响。研究重点是冷却系统,特别是蒸发式冷凝器技术,旨在探讨其基本原理、工作原理和理论方面。论文深入探讨了冷却系统中使用的各类冷凝器,强调了蒸发式冷凝器在提高传热效率方面的作用。考虑到空气和水的流速、湿球温度和传热系数等因素,详细介绍了蒸发式冷凝器的运行原理。此外,还回顾了评估蒸发式冷凝器性能的理论模型和数学方法。研究包括对蒸发式冷凝器技术现有文献的广泛回顾,涵盖制冷模型、暖通空调系统和各种实验研究。对理论模型进行了讨论,强调了对蒸发式冷凝器行为进行精确建模所面临的挑战。论文还介绍了研究的成就和进展,包括证明蒸发冷却对风冷冷凝器系统积极影响的实验。通过各种案例研究和实验验证,展示了在冷却系统中采用蒸发式冷凝器的潜在节能效果和性能改进。研究表明,将风冷式冷凝器改为蒸发冷却式冷凝器,可以减少 58% 的电力消耗。在制冷功率为 3 至 3000 千瓦的情况下,这种替代冷凝器可将性能提高 113.4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Overview of Enhancing the Efficiency of Vapor Compression Cooling Systems by the Implementation of Evaporative Condensers
This paper explores the significance of energy conservation in the context of rising energy consumption and its impact on economic growth. With a focus on cooling systems, particularly evaporative condenser technology, the study aims to investigate its fundamentals, operating principles, and theoretical aspects. The paper delves into the various types of condensers used in cooling systems, emphasizing the role of evaporative condensers in enhancing heat transfer efficiency. The operating principles of evaporative condensers are detailed, considering factors such as air and water flow rates, wet bulb temperatures, and heat transfer coefficients. Theoretical models and mathematical approaches for evaluating evaporative condenser performance are also reviewed. The research includes an extensive review of existing literature on evaporative condenser technology, covering refrigeration models, HVAC systems, and various experimental studies. Theoretical models are discussed, highlighting the challenges in accurately modeling evaporative condenser behavior. The paper also presents achievements and advancements in research, including experiments that demonstrate the positive impact of evaporative cooling on air-cooled condenser systems. Various case studies and experimental validations showcase the potential energy savings and improved performance achieved through the incorporation of evaporative condensers in cooling systems. By switching from an air-cooled to an evaporatively-cooled condenser, one can reduce electricity consumption by 58%, according to research. This alternate condenser type improves performance by 113.4% at from 3 to 3000 kW of cooling power.
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