发明名称 Method for determining the unique natural thermal lag (NTL) of a building
摘要 The invention provides an improved method for determining the natural thermal lag (NTL) of a building, where the improvement includes using the 15 minute interval energy usage data for the building, and data the external temperature to determine the NTL. This improved method has the advantage of being independent of any need to acquire data regarding internal temperature of the building in question.
申请公布号 US9317026(B2) 申请公布日期 2016.04.19
申请号 US201514606989 申请日期 2015.01.27
申请人 发明人 Shiel Patrick Andrew
分类号 G05D3/12;G05B15/02;G05B13/04;G06F17/18;F24D19/10;G06Q10/04;G06Q10/06;G06Q50/06;G06Q50/16;F24F11/00;G06F17/50 主分类号 G05D3/12
代理机构 代理人
主权项 1. An improved computer implemented method of managing the energy usage of a commercial building particularly through inputs to a central processing unit of said building's management system, where said method includes collecting and analysing building data, identifying building energy reduction opportunities, characterizing said building, applying optimization process to management of said building, and monitoring building energy usage and reporting results, thereby enabling on-going building energy usage optimization, where, in the step of characterizing said building, said improvement comprises: determining a natural thermal lag of said building by a) using a processor for calculating, i) a plurality of statistical regression relationships between average hourly energy usage, calculated during building operating hours, and a plurality of lagged average temperature indices for said building and where said plurality of lagged average temperature indices are averaged external temperatures over a working day with each index stepping back one hour in time;ii) calculating a natural thermal lag of said building by examination of a relationship between energy usage and external temperature for said building, which relationship is described by Ei=β0+β1(LTi)k=0.8+εi where Ei represents average hourly energy usage for said building on a day i, β0 represents a Y axis intercept of a linear relationship between energy and lagged temperature average, β1 represents a slope of a relationship between average hourly energy usage and a lagged temperature average (LTi)k=0.8 for a day i and ranging over a period k from 0 to 8 hours prior to a building closing time, ε is estimated variation; b) using said natural thermal lag of said building to calculate a mechanical cool down time of said building, where said mechanical cool down is a time period over which said building cools after said building's cooling pumps are started by said building management system; and c) outputting said mechanical cool down time to said building's energy management system, which system commands a plurality of chilling pumps and, in response to said mechanical cool down time, adjusts said chilling pumps speeds, enabling improved control of said building's cooling system operation in response to external weather parameters without internal building temperature data and thereby improving management of building energy usage.
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