HISTORY OF THERMAL ENERGY STORAGE.- ENERGETIC, EXERGETIC, ENVIRONMENTAL AND SUSTAINABILITY ASPECTS OF THERMAL ENERGY STORAGE SYSTEMS.- CLIMATE CHANGE AND THERMAL ENERGY STORAGE.- WHAT ENGINEERS NEED TO KNOW ABOUT CLIMATE CHANGE AND ENERGY STORAGE.- GLOBAL WARMING IS LARGE-SCALE THERMAL ENERGY STORAGE.- ENERGY STORAGE FOR SUSTAINABLE FUTUREA SOLUTION TO GLOBAL WARMING.- ENERGY EFFICIENT DESIGN AND ECONOMICS OF TES.- ENERGY EFFICIENT BUILDING DESIGN AND THERMAL ENERGY STORAGE.- HEAT STORAGE BY PHASE CHANGING MATERIALS AND THERMOECONOMICS.- UNDERGROUND THERMAL ENERGY STORAGE.- AQUIFER THERMAL ENERGY STORAGE (ATES).- ADVANCES IN GEOTHERMAL RESPONSE TESTING.- FREEZING PROBLEMS IN BOREHOLE HEAT EXCHANGERS.- THREE YEARS MONITORING OF A BOREHOLE THERMAL ENERGY STORE OF A UK OFFICE BUILDING.- A UNIQUE BOREHOLE THERMAL STORAGE SYSTEM AT UNIVERSITY OF ONTARIO INSTITUTE OF TECHNOLOGY.- BTES FOR HEATING AND COOLING OF THE ASTRONOMY HOUSE IN LUND.- BO 01 ATES SYSTEM FOR HEATING AND COOLING IN MALM?.- ATES FOR DISTRICT COOLING IN STOCKHOLM.- ENERGY PILE SYSTEM IN NEW BUILDING OF SAPPORO CITY UNIVERSITY.- PHASE CHANGE MATERIALS.- PHASE CHANGE MATERIALS AND THEIR BASIC PROPERTIES.- PHASE CHANGE MATERIALS: APPLICATION FUNDAMENTALS.- TEMPERATURE CONTROL WITH PHASE CHANGE MATERIALS.- APPLICATION OF PCM FOR HEATING AND COOLING IN BUILDINGS.- THE SUNDSVALL SNOW STORAGESIX YEARS OF OPERATION.- DEVELOPMENT OF THE PCM FLOOR SUPPLY AIR-CONDITIONING SYSTEM.- THERMOCHEMICAL ENERGY STORAGE.- CHEMICAL ENERGY CONVERSION TECHNOLOGIES FOR EFFICIENT ENERGY USE.- SORPTION THEORY FOR THERMAL ENERGY STORAGE.- ADSORPTION SYSTEMS FOR TESDESIGN AND DEMONSTRATION PROJECTS.- OPEN ABSORPTION SYSTEMS FOR AIR CONDITIONING AND THERMAL ENERGY STORAGE.Utilization of natural and renewable energy resources with thermal energy storage in heating and cooling applications Covering all aspects of thermal energy storage in aquifers, boreholes, phase change materials and thermochemical reactions Climate change mitigatl“ˇ