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Working fluid
Overview of Materials Used for the Basic Elements of Hydraulic Actuators and Sealing Systems and Their Surfaces Modification Methods
Isobaric Expansion Engines: New Opportunities in Energy Conversion for Heat Engines, Pumps and Compressors
The Atmospheric Steam Engine As Energy Converter for Low and Medium Temperature Thermal Energy
RECIPROCATING ENGINES Franck Nicolleau
Advanced Power Cycles with Mixtures As the Working Fluid
Dynamic and Thermodynamic Examination of a Two- Stroke Internal Combustion Engine
THESIS WASTE HEAT RECOVERY from a HIGH TEMPERATURE DIESEL ENGINE Submitted by Jonas E. Adler Department of Mechanical Engineerin
25 Kw Low-Temperature Stirling Engine for Heat Recovery, Solar, and Biomass Applications
Systematic Methods for Working Fluid Selection and the Design, Integration and Control of Organic Rankine Cycles—A Review
I Iiti I ,T Ti Ti
Chapter 7 Vapor and Gas Power Systems
Air Standard Assumptions Some Definitions for Reciprocation Engines
External Combustion Engines: Prospects for Vehicular Application
Working Fluid Replacement in Gaseous Direct-Injection
Novel Cycles Using Carbon Dioxide As Working Fluid
Organic Rankine Cycle and Its Working Fluid Selection-A Review
Analyzing the Implementation of Six Stroke I.C. Engine with Optimal Design of Camshaft Mr
Beta Type Stirling Engine. Schmidt and Finite Physical Dimensions Thermodynamics Methods Faced to Experiments
Top View
Analysis of a Novel Waste Heat Recovery Mechanism for an I.C. Engine
Vapor Power Cycles Ideal Rankine Cycle
The Effect of Working Fluid Properties on the Performance of a Miniature
The Development of Locomotive Power at Speed by E
Means of Preventing Heat of Working Fluid from Flowing Into Component Surfaces of Thermodynamic Piston Engines
An Organic Rankine Cycle Bottoming a Diesel Engine Powered Passenger Car
Selection of Optimum Working Fluid for Organic Rankine Cycles by Exergy and Exergy-Economic Analyses
Fundamentals of Gas Turbine Engines
STEAM ENGINE by USING FRESNEL LENSES Prof
Heat Transfer Characteristics in a Heat Pipe Using Water-Hydrocarbon
Thermodynamic Cycles of Reciprocating and Rotary Engines - R.S.Kavtaradze
Reliability and Endurance Testing of Locomotive Waste Heat Recovery System FR-RRD-0035-12-01-00 6
Principles of Energy Conversion Part 5
CM 3230 Thermodynamics, Fall 2016 Lecture 5
Designing a Distributed Concentrating Solar Combined Heat and Power System
Jan. 20, 1970 W. H. EA 3,490,234 47 Roawa YS
Malone Refrigeration: an Old Solution to a New Problem
Design and Analysis of a Crank Shaft V