会议论文详细信息
10th International Conference on Compressors and their Systems
Novel Long Stroke Reciprocating Compressor for Energy Efficient Jaggery Making
Rane, M.V.^1 ; Uphade, D.B.^1
Heat Pump Laboratory, Mechanical Engineering Department, IIT Bombay, Powai, Mumbai
076, India^1
关键词: Energy efficient;    Isentropic efficiency;    Large surface area;    Operational stability;    Outlet temperature;    Specific energy consumption;    Super-heated vapour;    Volumetric efficiency;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/232/1/012004/pdf
DOI  :  10.1088/1757-899X/232/1/012004
来源: IOP
PDF
【 摘 要 】

Novel Long Stroke Reciprocating Compressor is analysed for jaggery making while avoiding burning of bagasse for concentrating juice. Heat of evaporated water vapour along with small compressor work is recycled to enable boiling of juice. Condensate formed during heating of juice is pure water, as oil-less compressor is used. Superheat of compressor is suppressed by flow of superheated vapours through condensate. It limits heating surface temperature and avoids caramelization of sugar. Thereby improves quality of jaggery and eliminates need to use chemicals for colour improvement. Stroke to bore ratio is 0.6 to 1.2 in conventional reciprocating drives. Long stroke in reciprocating compressors enhances heat dissipation to surrounding by providing large surface area and increases isentropic efficiency by reducing compressor outlet temperature. Longer stroke increases inlet and exit valve operation timings, which reduces inertial effects substantially. Thereby allowing use of sturdier valves. This enables handling liquid along with vapour in compressors. Thereby supressing the superheat and reducing compressor power input. Longer stroke increases stroke to clearance ratios which increases volumetric efficiency and ability of compressor to compress through higher pressure ratios efficiently. Stress-strain simulation is performed in SolidWorks for gear drive. Long Stroke Reciprocating Compressor is developed at Heat Pump Laboratory, stroke/bore 292 mm/32 mm. It is operated and tested successfully at different speeds for operational stability of components. Theoretical volumetric efficiency is 93.9% at pressure ratio 2.0. Specific energy consumption is 108.3 kWhe/m3separated water, considering free run power.

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