首页> 外文期刊>ASHRAE Transactions >Condenser Water Optimization: Don't Let Perfect Be the Enemy of Good!
【24h】

Condenser Water Optimization: Don't Let Perfect Be the Enemy of Good!

机译:冷凝器水优化:不要让完美成为善良的敌人!

获取原文
获取原文并翻译 | 示例
           

摘要

Chilled water (CHW) systems are significant energy users in both industrial and commercial sectors. They are custom built for each site, often with rule of thumb design practices, leaving room for significant optimization. Although publications on techniques for CHW system optimization are widely available, these techniques require detailed engineering analysis to implement, due to complex interactions between system equipment. The sheer number of CHW systems in service, make it unrealistic to perform optimization analyses on every system. The result is good best practice control strategies are not utilized in most chilled water systems because the recommended "optimum " control parameters are unavailable. In other words, "Perfect is the enemy of the good".This paper focuses on large water-cooled CHW systems which include chiller(s), condenser pump(s) and cooling tower fan(s). Special focus is placed on improved condenser water setpoint (CW stpt) controls, which can result in 5% to 10% annual system energy savings. This paper takes the first steps in generalizing key variables to obtain "best practice" condenser water control strategies given typical design practices, equipment, load profiles and climate zone. Based on experience, these best practices would apply to most typical chilled water systems. These best practices in most cases would not be as efficient as the optimum, but would be easier to implement. The goal of this paper is to empower CHW system operators to implement CW stpt best practices to achieve energy savings without detailed analysis. This could reduce industrial sector electrical energy use by 1 to 2%.
机译:寒冷的水(CHW)系统是工商界的重要能源用户。它们是针对每个网站的定制构建,通常具有拇指设计实践规则,留下了显着优化的空间。虽然对CHW系统优化技术的技术进行了广泛的可用性,但是这些技术需要详细的工程分析来实现,因为系统设备之间的复杂相互作用。服务中的CHW系统的纯粹数量,使得在每个系统上执行优化分析不切实际。结果是良好的最佳实践控制策略在大多数寒冷的水系统中不使用,因为建议的“最优”控制参数不可用。换句话说,“完美是善良的敌人”。本文侧重于大型水冷CHW系统,包括冷却器,冷凝器泵和冷却塔风扇。特别重点放在改进的冷凝器水设定值(CW STPT)控制上,这可能会产生5%至10%的年度系统节能。本文采用了概括关键变量的第一步,以获得“最佳实践”冷凝器水控制策略给出典型的设计实践,设备,负载曲线和气候区。根据经验,这些最佳实践将适用于最典型的冷冻水系统。在大多数情况下,这些最佳实践不会与最佳效率高效,但更容易实施。本文的目标是使CHW系统运营商能够实施CW STPT最佳实践,以实现节能而无需详细分析。这可以将工业部门电能降低1%至2%。

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