ASHRAE 4685-2004 Overview of Existing Literature on Diversity Factors and Schedules for Energy and Cooling Load Calculations (RP-1093)《现有文献对多样性的因素 附表能源 与冷却负荷计算RP-1093的概述》.pdf
《ASHRAE 4685-2004 Overview of Existing Literature on Diversity Factors and Schedules for Energy and Cooling Load Calculations (RP-1093)《现有文献对多样性的因素 附表能源 与冷却负荷计算RP-1093的概述》.pdf》由会员分享,可在线阅读,更多相关《ASHRAE 4685-2004 Overview of Existing Literature on Diversity Factors and Schedules for Energy and Cooling Load Calculations (RP-1093)《现有文献对多样性的因素 附表能源 与冷却负荷计算RP-1093的概述》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、4685 (RP-1093) Overview of Existing Literature on Diversity Factors and Schedules for Energy and Cooling Load Calculations Bass Abushakra, Ph.D. Member ASHRAE Member ASHRAE Member ASHRAE Jeff S. Haberl, Ph.D., P.E. David E. Claridge, Ph.D., P.E. ABSTRACT This paper provides an overview of methods re
2、ported in the literature for generating typical load shapes required for the simulation of energy use and peak cooling loads in commercial buildings. It also includes a survey of available databases of monitored commercial end-use electricity data and a review of classzjication schemes of the commer
3、cial build- ing stock. This study was conducted as part of ASHRAE P- 1093, whose objective was to identih and utilize the most appropriate methods for developing diversity factors on rele- vant monitored sets of lighting and equipment data. The paper also provides a discussion offour methods in the
4、literature that were adapted and combined in RP-1093 to develop a library of diversity factors and schedules for use in building energy and cooling load simulation programs. INTRODUCTION In most o%ce buildings, internal heat gains from people, plug loads, and lighting are significant contributions t
5、o the cooling load and, hence, are very important for energy calcu- lations. Energy simulation programs typically require the input of representative hourly values of the electrical consumption of lights and equipment. The heat gains from these sources deviate from their peak values due to people en
6、tering and leaving the building, who switch lights and equipment on and off. Some equipment, such as computers and copiers, automatically switches to ?standby? or ?energy saving? modes when unused for a period of time during the day. This variability in operation of office equipment and lighting is
7、typically treated by entering the peak consumption of lighting and plug loads and then using different sets of 24- hour ?diversity factors? for weekdays, weekends, and any other set(s) of important daily variations. These diversity factors are numbers between zero and one that are used to multiply t
8、he peak consumption that has been entered. Diver- sity factors given in the user?s manuals of individual simula- tion programs or estimates from engineering experience are normally used in simulation. The goal of ASHRAE RP-1093 was to compile a library of schedules and diversity factors based on mea
9、sured electric- ity consumption data for use in energy simulations and peak cooling load calculations in office buildings. This research project derived multiple sets of diversity factors from measured data in 32 office buildings (Abushakra et al. 2002). As part of the research, the methods reported
10、 in the literature for generating load profiles were carefully reviewed, and the methodology suitable for use with one year of hourly profiles was developed and implemented in a spreadsheet. The project also developed a procedure for estimating diversity profiles for loads due to occupants that is b
11、ased on the diversity profiles for lights and plug loads (Abushakra and Claridge 2001). This paper presents a review of the literature on methods for generating load shapes required for simulation of energy use and peak cooling loads and the databases containing end- use energy consumption data for
12、commercial buildings. The literature on diversity factors and load shapes was examined, with particular attention to the descriptions of methods used, references to existing databases of monitored whole-building energy use and end-use data in commercial buildings, and different ways of classieing th
13、e commercial building stock. Literature related to identification and testing of appropriate daytyping methods on monitored data sets of lighting and equipment consumption is also discussed. Table 1 presents a chronological list of the available literature describing data- bases of monitored energy
14、use, load shape determination methods, and commercial building classification schemes. Only one-third of the literature reviewed described the meth- Bass Abushakra is an assistant professor in the Architectural Engineering and Building Construction Department, Milwaukee School of Engi- neering, Milw
15、aukee, Wisc. Jeff S. Haberl is a professor in the Department of Architecture and David E. Claridge is a professor in the Depart- ment of Mechanical Engineering, Texas A Norford et al. (1988); Parti et al. (1988); ASHRAE (1 989); Haberl and Komor (1 989); Verdi (1 989); Akbari et al. (1990); Eto et a
16、l. (1990); Finleon (1990); Gillman et al. (1 990); Haberl and Komor (1 990); Pratt et al. (1990); Schon and Rodgers (1990); Stoops and Pratt (1990); ASHRAE (1 99 i); Katipamula and Haberl (1 991); Bronson et al. (1 992); Mazzucchi (1992); Rohmund et al. (1992); Abbas (1993); Hadley (1993); Akbari et
17、 al. (1994); Alereza and Faramarzi (1994); Halverson et al. (1994); Hamzawi and Messenger (1 994); Jacobs et al. (1 994); Margossian (1 994); Norford et al. (1 994); Szydlowski and Chvala (1 994); Thamilseran and Haberl (1 994); Wilkins and McGaffin (1 994); Bou-Saada and Haberl (1 995); CEED (1 995
18、); Dhar (1 995); Bou-Saada et al. (1 996); Emery and Gartland (1 996); Floyd et al. (1 996); Kati- pamula et al. (1996); Nordman et al. (1996); Parker (1996); Noren (1 997), and Noren and Pyrko (1 998a and b), discussing methods used in Europe; EPRI (1999); Keith and Krarti (1 999); and Thamilseran
19、(1 999). Additional papers gave an insight into approaches to derive the diversity factors, categories of office equipment and their typical energy use, comparison of engineering methods with statistical methods of deriving load shapes, and other 166 ASHRAE Transactions: Research Table 2. Typical Lo
20、ad Shape Samples of Office Buildings from Existing Literature Typical Load Shape Samples TLS for equipment in small office buildings TLS of office buildings in the Pacific Northwest Reconciled TLS for large office buildings Reconciled TLS for small office buildings Whole-building TLS for commercial
21、buildings TLS (July weekdays) for large office buildings TLS of whole-building electric, with electric space heating, for an office building TLS for ofice buildings TLS from measured and simulated data for office buildings Measured and simulated TLS for a large institu- tional building TLS for a med
22、ium office building Description Reference Weekday and weekend (W) Disaggregated average January and July weekday and weekend WBE (MW) Disaggregated WBE into various end-uses (kW). Disaggregated WBE into various end-uses (kW). Restaurant, grocery store, and large office (% of WBE and disaggregated en
23、d-use (% of peak). Disaggregated WBE for a cold day and an average January weekday (W/f?) Normalized measured and simulated lighting and equipment loads (0-1) January, April, July, and Summer peak day for gov- ernment office and private office buildings (kW) Weekday and weekend WBE for different aca
24、demic year periods (kW) Normalized (average kW/max kW) based on manual, EMCS, and occupant sensor controls Norford et al. 1988 Baker and Guliasi 1988 Akbari et al. 1989 Akbari et al. 1989 Baker 1990 peak). Baker 1990 Giliman et al. 1990 Stoops and Pratt 1990 Barrar et al. 1992 Bronson et al. 1992 Di
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ASHRAE46852004OVERVIEWOFEXISTINGLITERATUREONDIVERSITYFACTORSANDSCHEDULESFORENERGYANDCOOLINGLOADCALCULATIONSRP1093

链接地址:http://www.mydoc123.com/p-454268.html