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| EI文摘 | TITLE |
| |
| 1 | EnergyPlus: The future of building energy simulation. U.S. DOE replaces DOE-2 and BLAST |
| 2 | Analytical and comparative testing ofEnergyPlususing IEA HVAC BESTEST E100-E200 test suite |
| 3 | Development of a thermal energy storage model forEnergyPlus |
| 4 | Experimental validation of theEnergyPluslow-temperature radiant simulation |
| 5 | VAV HVAC system simulation usingEnergyplus |
| 6 | Energyplusand its application in a BCHP system simulation |
| 7 | Passive performance of a high-mass residence: Actual data vs. simulation |
| 8 | Energy consumption and comfort analysis for differentlow-energycooling systems in a mild climate |
| 9 | Applying the building energy simulation test (BESTEST) diagnostic method to verification of space conditioning equipment models used in whole-building energy simulation programs |
| 10 | Modeling radiant systems in an integrated heat balance based energy simulation program |
| 11 | A convergent optimization method using pattern search algorithms with adaptive precision simulation |
| 12 | On approaches tocoupleenergy simulation and computational fluid dynamics programs |
| 13 | Design and testing of a control strategy for a large, naturally ventilated office building |
| 14 | Parametric analysis of active and passive building thermal storage utilization |
| 重复15 | Parametric analysis of active and passive building thermal storage utilization |
| 16 | Energy savings of office buildings by the use ofsemi-transparentsolar cells for windows |
| 17 | Use of simulation in the design of a large, naturally ventilated office building |
| 18 | Modelingphase change materialswith conduction transfer functions for passive solar applications |
| 19 | Energy plus: Energy simulation program |
绿色建筑博客4vF(hP&sEI-1绿色建筑博客e-II8ax#u4@;t
EnergyPlus: The future of building energy simulation. U.S. DOE replaces DOE-2 and BLAST
)d$rE'X#ED8k7a0Crawley, D.B. (U.S. Department of Energy) Source: HPAC Heating, Piping, AirConditioning Engineering, v 73, n 11, November, 2001, p 65-67绿色建筑博客&|rl7G8Hu*Q
ISSN: 1527-4055 CODEN: HEPNAH绿色建筑博客{l DSF%b+d-Xx
Publisher: Penton Publishing Co.绿色建筑博客$^)s#Qj_]
Abstract: The EnergyPlus program has been developed in recognition of the need for a new building energy simulation program. This program conforms to the demands of the Internet age, without surrendering the power required to successfully calculate energy load and costs in an era that demands the accurate prediction and tight control of energy usage. (Edited abstract)
BO$n b6p&s0Ei controlled terms: Building signal systems | Computer simulation | Calculations | Computational methods | Technical presentations | FORTRAN (programming language)
7h2WN/c{"gL4]0Database: Compendex
xzrolu*~0Compilation and indexing terms, Copyright 2005 Elsevier Engineering Information, Inc.
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EQBq%[ WC0E+:美国能源部代替DOE-2和BLAST的软件,建筑能耗模拟的未来
Zr9m Cr0摘要:E+程序的开发被作为满足新的建筑能耗模拟的程序。该程序符合互联网时代的要求,可以成功的计算能耗负荷和消耗在一个时期内,该时期需要对能量的使用有精确的预言和谨慎的控制。绿色建筑博客 NklM
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kSi0Analytical and comparative testing of EnergyPlus using IEA HVAC BESTEST E100-E200 test suite绿色建筑博客1@G\Qpr
Henninger, Robert H. (GARD Analytics Inc.); Witte, Michael J.; Crawley, Drury B. Source: Energy and Buildings, v 36, n 8, August, 2004, p 855-863绿色建筑博客,y\$|sy2Cq~}`i
ISSN: 0378-7788 CODEN: ENEBDR
,^|/|8kd WX!|0Publisher: Elsevier Ltd绿色建筑博客z4w]FP
Abstract: The EnergyPlus building energy simulation software has been tested using the IEA HVAC BESTEST E100-E200 series of tests. The volume 1 final report for the International Energy Agency (IEA) solar heating and cooling programme task 22 building energy simulation test and diagnostic method for heating, ventilating, and air conditioning equipment models (HVAC BESTEST) was recently published in January 2002. HVAC BESTEST is a series of steady-state tests for a single-zone DX cooling system. Cases range from dry to wet coil, low to high part load, and low to high temperatures. This published test suite includes three sets of analytical solutions and results from several other simulation programs for comparison. This test suite was initially used to test EnergyPlus beginning with beta versions prior to its official public release, and it is also applied as an ongoing quality assurance test. The application of these tests proved to be very useful in several ways: revealed input model shortcomings, which resulted in new user inputs being added; revealed reporting errors which were fixed; revealed algorithmic errors which were fixed; revealed algorithmic shortcomings which were improved or eliminated through the use of more rigorous calculations for certain components; in later versions, caught newly introduced bugs before public release of updates. Overall, the application of this test suite has been extremely useful in debugging and verifying the DX cooling algorithms in EnergyPlus. This paper summarizes the difficulties encountered and the benefits gained in applying the tests.
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