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Long-Haul Truck Sleeper Heating Load Reduction Package for Rest Period Idling

机译:长途卡车睡眠机加热负载减少休息时间怠速

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Annual fuel use for sleeper cab truck rest period idling is estimated at 667 million gallons in the United States, or 6.8% of long-haul truck fuel use. Truck idling during a rest period represents zero freight efficiency and is largely done to supply accessory power for climate conditioning of the cab. The National Renewable Energy Laboratory’s CoolCab project aims to reduce heating, ventilating, and air conditioning (HVAC) loads and resulting fuel use from rest period idling by working closely with industry to design efficient long-haul truck thermal management systems while maintaining occupant comfort. Enhancing the thermal performance of cab/sleepers will enable smaller, lighter, and more cost-effective idle reduction solutions. In addition, if the fuel savings provide a one- to three-year payback period, fleet owners will be economically motivated to incorporate them. For candidate idle reduction technologies to be implemented by original equipment manufacturers and fleets, their effectiveness must be quantified. To address this need, several promising candidate technologies were evaluated through experimentation and modeling to determine their effectiveness in reducing rest period HVAC loads. Load reduction strategies were grouped into the focus areas of solar envelope, occupant environment, conductive pathways, and efficient equipment. Technologies in each of these focus areas were investigated in collaboration with industry partners. The most promising of these technologies were then combined with the goal of exceeding a 30% reduction in HVAC loads. These technologies included “ultra-white” paint, advanced insulation, and advanced curtain design. Previous testing showed more than a 35.7% reduction in air conditioning loads. This paper describes the overall heat transfer coefficient testing of this advanced load reduction technology package that showed more than a 43% reduction in heating load. Adding an additional layer of advanced insulation with a reflective barrier to the thermal load reduction package resulted in a 53.3% reduction in the overall heat transfer coefficient.
机译:睡眠驾驶室卡车休息时间怠速的年燃料用途估计在美国667万加仑,或6.8%的长途卡车燃料使用。在休息期间的卡车空转代表零运输效率,并且主要用于为驾驶室的气候调节提供配件电源。全国可再生能源实验室的Coolcab项目旨在通过与工业密切合作,减少加热,通风和空调(HVAC)负载,并导致休息时期怠速使用,以设计高效的长途卡车热管理系统,同时保持乘客舒适。增强驾驶室/睡眠机的热性能将实现较小,更轻,更具成本效益的闲置解决方案。此外,如果燃油储蓄提供了一个至三年的投资回收期,舰队业主将在经济上有动力纳入它们。对于由原始设备制造商和舰队实施的候选闲置技术,必须量化其有效性。为了解决这种需求,通过实验和建模评估了几种有希望的候选技术,以确定其在减少休息时期HVAC负荷方面的有效性。将减少负载策略分为太阳能信封,乘员环境,导电途径和高效设备的焦点区域。与行业合作伙伴合作调查了每种焦点领域的技术。然后将这些技术的最有希望的结合在于HVAC负载减少的目标超过30%。这些技术包括“超白色”涂料,先进的绝缘和先进的窗帘设计。以前的测试显示空调负荷减少了35.7%。本文介绍了这种先进的负载减少技术包的总传热系数测试,该封装显示出的加热负荷减少了43%。在热负荷封装中添加具有反射屏障的附加高级绝缘层,导致总传热系数降低53.3%。

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