Simulation research and
development
pag. 1 :: SUMMARY OF
RECENT ON BUILDING ENERGY SIMULATION ANALYSIS IN NORTH
AMERICA
Tamami Kusuda
pag.
15 :: RECENT
DEVELOPMENTS OF BUILDING ENERGY SIMULATION TOOLS IN EUROPE
J. Sornay
pag. 23 :: SURVEY OF
SIMULATION TECHNOLOGY IN JAPAN AND ASIA
Y.
Matsuo
pag. 31 :: SURVEY OF
SIMULATION TECHNOLOGY IN AUTRALIA AND NEW ZEALAND
M. D. Mason, M. Sc. (S&V), M.I.E. Aust., Mairah,
Maas
Effective simulation
applications
pag. 41 :: THE USE OF
BUILDING ENERGY SIMULATION FROM THE BUILDING OWNRES
PERSPECTIVE
James E.
Butler
pag. 45 :: BUILDING
ENERGY SIMULATIONAND THE ARCHITECT
Daniel H.
Nall
pag. 49 :: MEETING THE
RESEARCHER’S NEEDS IN BUILDING ENERGY SIMULATION
P. Fazzio, R. Zmeureanu
pag. 56 :: BUILDING
ENERGY SIMULATION IN THE ENGINEER’S OFFICE – A USEFUL TOOL
J. Marx Ayres, Henry Lau
pag. 62 :: BUILDING
ENERGY SIMULATION FROM THE MANUFACTURER’S PERSPECTIVE
J. R. Miles
Microcomputer techniques
pag. 66 :: CALPAS 4
AND BEYOND – MICROCOMPUTERS, GRAPHICS, AND BUILDING ENERGY
SIMULATION
Charles S.
Barnaby
pag. 72 :: TRAKLOAD -
ENERGY ANALYSIS AND ENERGY AUDITS IN COMMERCIAL BUILDING
Robert C. Sonderegger
pag. 81 :: SUNCODE -
PC:A MICROCOMPUTER VERSION OF SERI/RES
Mary
Jane DeLahunt, Larry Palmiter
pag. 88 :: TECHNICAL
ENHANCEMENTS TO THE ASEAM2 PROGRAM
James A.
Fireovid
pag. 92 :: THE EN4M
MICROCOMPUTER PROGRAM FOR ESTIMATION OF BUILDING ENERGY CONSUMPTION AND
ECONOMIC COMPARISON OF ENERGY SAVING OPTIONS
R.
S. McClintock
pag. 104 :: ECAP – AN
ENERGY AND COST ANALYSIS PROGRAM FOR MICROCOMPUTERS
Jeffrey S. Jansen
pag. 112 :: A
SIMPLIFIELD MICROPOMPUTER METHOD FOR HEATING AND COOLING CALCULATIONS USED
IN THE COMPUTERIZED INSTRUMENTED REDIDENTIAL AUDIT (CIRA)
Robert C. Sonderegger, Jean-Yves
Garnier
pag. 144 :: ESPRE 1.2:
A MICROCOMPUTER PROGRAM RESIDENCIAL HOURLY ENERGY USE
ANALYSIS
Richard L. Merriam
User interface
pag. 150 :: THE PLACE
OF COMPUTER GRAPHCS IN BUILDING ENERGY SIMULATION
Jon H. Pittman
pag. 154 :: BESA, CANADA’S
SOLUTION TO THE USER INTERFACE
Dan
Seth
pag. 155 :: REAL TIME
SIMULATION IN BUILDING AUTOMATION SYSTEMS
James
A. Nation
pag. 159 :: BUILDING
SIMULATION EXTENDED – THE PROCESS CONNECTION
E.
C. Knipe
pag. 169 :: ARTIFICIAL
INTELILLIGENCE – DOES IT HAVE A PLACE IN BUILDING SIMULATION
Richard N. Wright
New
program developments
pag. 175 :: AN
OVERVIEW OF HVACSIM+, A DYNAMIC BUILDING /HVAC/ CONTROL SYSTEMS SIMULATION
PROGRAM
George E. Kelly
pag.
187 :: HASP/ACSS:
SIMULATION PROGRAM FOR ENERGY COSUMPTION OF AIR CONDITIONING
SYSTEMS
Tatsuo Inooka
pag.
195 :: NEW
FEATURES OF THE DOE-2.1 C ENERGY ANALYSIS PROGRAM
W. F. Buhl, A. E. Erden, J. H. Eto, J.J. Hirsch, F. C.
Winkelmann
pag. 201 :: BLAST
INPUT PREPROCESSORS
Linda K.
Lawrie
pag. 209 :: MACRODYMANICS:
A UNIFIELD FRAMEWORK FOR BUILDING ENERGY ANALYSIS
Kris Subbarao
pag. 215 :: THE ESP
SYSTEM: TOWARDS A NEW GENERATION OF BUILDING ENERGY ANALYSIS
PROGRAM
Joe Clarke
Successful applications
pag. 229 :: ARGUING
FOR ENERGY ANALYSIS – EXPERIENCE OF THE U.S ARMY CORPS OF ENGINEERS WITH
ENERGY ANALYSIS DURING DESIGN
Dwight A.
Beranek
pag. 237 :: DEMONSTRATED
COST AVOIDANCE THROUGH BUILDING ENERGY SIMULATIONS AND ECONOMIC
ANALYSES
Steven P. Kimsey, Andrew T.
Smith
pag. 246 :: ENERGY AND
COST EFFECTIVENESS OF DESIGN ALTERNATIVES FOR AN AN=DMINISTRATION BUILDING
IN KANSAS
JoAnn amber
pag.
252 :: DISCOVERING
THE UNEXPECTED THROUGH THE USE OF THE DOE-2.1 BUILDING ENERGY SIMULATION
PROGRAM
Mark R. Davenport, Lung-Sing
wong
Validation/other research and
development
pag. 256 :: CHARACTERIZING
THE EFFECTS OF WEATHER ON COMMERCIAL BUILDING ENERGY USE
Joseph H. Eto
pag. 264 :: INTERNATIONAL
ENERGY AGENCY BUILDING SIMULATION COMPARISON AND VALIDATION
STUDY
R. D. Judkoff
pag.
274 :: ANALYTICAL
AND EMPIRICAL VALIDATION OF DYNAMIC THERMAL BUILDING MODELS
Allen E., Dave Bloomfield, Bowman N., Lomas K., allen J.,
Whittle J., Irving A.
pag. 282 :: A
COMPARATIVE VALIDATION OF THE LONG ENERGY CONSUMPTION PREDICTIONS OF FIVE
RESIDENTIAL BUILDING ENERGY SIMULATION PROGRAMS IN A HEATING
CLIMATE
Louis F. Goldberg
pag.
290 :: COMPARISON
OF EMPIRICALLY MEASURED END-USE METERED DATA WITH DOE 2.1
SIMULATION
James A. Heidell, Z. T.
Taylor
Choosing the best
tool
pag. 298 :: COMPUTER
MODELING OF THE BUILDING DESIGN WITH THE COMPUTER-AIDED ENGINEERING/
ARCHITECTURAL DESIGN SYSTEM
Kenneth H.
Crawford
pag. 302 :: DEVELOPMENT
OF AN EVALUATION PROCEDURE FOR BUILDING ENERGY DESIGN
Alexander J. Willman
pag. 308 :: VECTOR
DIAGRAM FOR THERMAL ECONOMICS OF ENERGY CONSERVATION
BUILDINGS
Tetsuo Nakayama, Kanji Sakai, Hideaki
Hayashi, Kiyotaka Endo
pag. 316 :: DEVELOPMENT
OF SIMPLIFIED DESIGN TOOL USING A NEW APPROACH TO BUILDING ENERGY
SIMULATIONS
R. G. Derickson, M. J.
Holtz
pag. 324 :: ARCHITECTURAL
DIVERSITY THROUGH CLIMATE RESPONSIVE DESIGN
M.
Stephen Zdepski
Solar related program
developments
pag. 326 :: DAYLIGHTING
SIMULATION IN DOE-2: THEORY, VALIDATION, AND APPLICATIONS
Frederick Winkelmann
pag. 338 :: THE
SUNSPACE: COMPUTATION AND IN- SITU MEASURES
Grattia E.
pag. 346 :: PASSIVE
SYSTEM SIMULATION PROGRAM ‘PSSP’ AND ITS APPLICATIONS
Tetsuo Hayashi, Yoshimi Urano, Toshiyuki Watanabe, Yuji
Ryu
pag. 354 :: RESIDENTIAL
WINDOW PERFORMANCE ANALYSIS USING REGRESSION PROCEDURES
R. Sulivan, S. Selkowitz
pag. 360 :: VALIDATION
OF ENERGY SIMULATION PROGRAM FOR PASSIVE SOLAR HOUSE
Makoto Ishizuka, kasuo Kobashi, Tadao
Nakamura
pag. 368 :: THE
MEASURE PERFORMANCE AND COMPUTER SIMULATION OF TWO UNHEATED PASSIVE SOLAR
TEST CELLS IN THE PACIFIC NORTHWEST
A. F.
Emery, J. L. Garbini, D. R. Heerwagen, R. D. Kunkle, C. J.
Kippenhan
Microcomputer
techniques
pag. 376 :: BUILDING
DESIGNER – FRIENDLY SOFTWARE ‘MICRO COMPUTER ENERGY SIMULATION THAT GOES
BEYOND USER FRIENDLY’
Bruce T.
Haglund
pag. 380 :: SIMPLIFIED
ENERGY ANALYSIS OF RESIDENCES
R. Ritschard, J.
Huang S. Byrne, I. Turiel, J.B bull
pag. 386 :: SUNHOSE: A
MICROCOMPUTER PROGRAM TO ESTIMATE CONSERVATION AND SOLAR
BENEFITS
Danny S. Parker
Panel discussion: simulation – a tool whose time has
come?
pag. 396 :: PLAN FOR
THE DEVELOPMENT OF THE NEXT – GENERATION BUILDING ENERGY ANALYSIS COMPUTER
SOFTWARE
James J. Hirsch
pag.
406 :: BRINGING
ORDER TO THE ENERGY SIMULATION PROCESS
Linda K.
Lawrie |