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Thermal Management Control System with Networked Thermostats on USS Essex (LHD 2)

机译:USS Essex(LHD 2)上具有网络恒温器的热管理控制系统

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The Heating, Ventilation, and Air Conditioning (HVAC) system is one of the largest distributed systems on a surface ship. The technology for controlling the ship's compartments temperatures is decentralized and total system performance is largely unmonitored. As a result, the current HVAC system is inefficient and maintenance is often neglected until corrective action is required on a specific system or component. The Thermal Management Control System (TMCS) uses networked thermostats and central monitoring and control stations to improve the operational parameters of compartment cooling and heating while giving Ship's Force greater visibility of space temperatures, chill water distribution, AC plant status, and system health. Additionally, energy savings from improved system efficiency in turn opens up both electric and cooling capacity on the Ship's grid for future high energy loads. This paper will look at the latest iteration of TMCS aboard USS Essex (LHD 2) and discuss: 1. Shortcomings of the legacy HVAC system; 2. How lessons learned from PC and DDG 51 class TMCS systems were used to adapt and improve the technology to the LHD 1 class, such as integrating TMCS to the existing Fluid Control System (FCS); and 3. The lessons learned from the recent USS Essex TMCS installation and how comprehensive grooms of the HVAC system during the installation of TMCS uncover hidden legacy issues. In conclusion, this paper will demonstrate the direct and indirect values of: the centralized monitoring and control capabilities of TMCS on system performance, energy savings, and maintenance aboard USS Essex; adapting a cross-platform, COTS-based technology to more ship classes, specifically the LHD 1 class; and grooming a ship's HVAC system to uncover legacy equipment and performance issues.
机译:加热,通风和空调(HVAC)系统是水面舰艇上最大的分布式系统之一。分散控制船舱温度的技术是分散的,整个系统的性能在很大程度上不受监控。结果,当前的HVAC系统效率低下,并且在需要对特定的系统或组件采取纠正措施之前,经常忽略维护。热管理控制系统(TMCS)使用联网的恒温器和中央监控站来改善舱室冷却和加热的操作参数,同时使“舰队”对太空温度,冷水分配,空调设备状态和系统运行状况具有更大的可视性。此外,系统效率提高带来的能源节省反过来为未来的高能源负荷打开了舰船电网的电力和冷却能力。本文将着眼于USS Essex(LHD 2)上TMCS的最新版本,并讨论:1.传统HVAC系统的缺点; 2.如何利用从PC和DDG 51级TMCS系统中学到的经验来适应和改进LHD 1级技术,例如将TMCS集成到现有的流体控制系统(FCS)中; 3.从最近的USS Essex TMCS安装中汲取的经验教训以及在安装TMCS期间如何对HVAC系统进行全面修饰,以发现隐藏的遗留问题。总之,本文将演示以下方面的直接和间接价值:TMCS在USS Essex上对系统性能,节能和维护的集中监视和控制功能;使跨平台,基于COTS的技术适应更多船级,特别是LHD 1级;并修饰船舶的HVAC系统,以发现旧设备和性能问题。

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