93 - 103 |
COMBINED CYCLES WITH GAS-TURBINE ENGINES NAJJAR YSH, AKYURT M |
105 - 116 |
GRAPHICAL EXERGY ANALYSIS OF A NEW-TYPE OF ADVANCED CYCLE WITH SATURATED AIR JIN HG, ISHIDA M |
117 - 127 |
COGENERATION - ONE-WAY TO USE BIOMASS EFFICIENTLY GUSTAVSSON L, JOHANSSON B |
129 - 141 |
GAS-TURBINES IN INDUSTRIAL CHP APPLICATIONS - ASSESSMENT OF ECONOMICS STROMBERG J, FRANCK PA |
143 - 152 |
MODELING AND CONTROL OF AN AIR-TO-AIR HEAT-RECOVERY SYSTEM ZAHEERUDDIN M, WANG JCY |
153 - 163 |
COMPARATIVE-ANALYSIS OF THE OFF-DESIGN PERFORMANCE FOR GAS-TURBINE COGENERATION SYSTEMS KIM TS, OH CH, RO ST |
165 - 171 |
GAS-DRIVEN ABSORPTION RECOMPRESSION SYSTEM RIFFAT SB, WONG CW |
173 - 183 |
THERMODYNAMIC STUDY OF ADVANCED ABSORPTION HEAT TRANSFORMERS .1. SINGLE AND 2-STAGE CONFIGURATIONS WITH HEAT-EXCHANGERS RIVERA W, BEST R, HERNANDEZ J, HEARD CL, HOLLAND FA |
185 - 193 |
THERMODYNAMIC STUDY OF ADVANCED ABSORPTION HEAT TRANSFORMERS .2. DOUBLE ABSORPTION CONFIGURATION RIVERA W, BEST R, HERNANDEZ J, HEARD CL, HOLLAND FA |
195 - 209 |
COMPUTER MODELING OF A DIRECT-CONTACT CONDENSING HEAT-EXCHANGER FOR GAS FURNACES CHRISTENSEN RN, LIU Q, TALBERT SG |
211 - 220 |
OPTIMIZING A REFINERY USING THE PINCH TECHNOLOGY AND THE MIND METHOD NILSSON K, SUNDEN B |
221 - 221 |
UNTITLED SPINNER B |