(a) Field of the invention
The present invention improves the conventional applications for heat exchange device or full heat exchange device to have the heat exchange operating function of single flow circuit for periodic positive and reverse directional pumping thereby timely improving the temperature distribution between the fluid and the heat exchanger, and when the heat exchanger is further insertingly installed or coated with desiccant material, or the heat exchanger itself is the heat exchanger having concurrent moisture absorbing function, then it is through the single flow-circuit periodic positive and reverse directional pumping fluid for passing through the heat exchanger inside the fluid pump, or passing through the heat exchanger being insertingly installed or coated with desiccant material, and/or passing through the heat exchanger itself having concurrent moisture absorbing function to constituted the thermal energy reclaim and dehumidification effect of full heat exchange functions as well as to reduce the imperfections of dust accumulation production at fixed flow directions.
(b) Description of the Prior Art
If the heat exchanger (100) as shown in
The present invention discloses that the conventional heat exchange device having pumping fluids at fixed flow directions is made to have the single flow-circuit heat exchange device for periodic positive and reverse directional pumping thereby obtaining the following advantages: 1) in heat exchange applications, the temperature difference distribution status between at lease one of i) internally installed heat exchange device, or ii) externally installed heat exchange device, or iii) the piping, and the fluid in heat absorption or heat release is changed by periodically positive and reverse pumping fluids in different flow directions, thereby promoting the heat exchange efficiency; 2) for full heat exchange applications of the heat exchanger (100) being insertingly installed or coated with desiccant material, or the heat exchanger itself being the full heat exchanger (200) having concurrent moisture absorbing function, or the flow circuit of the fluid being externally series connected with a full heat exchange device or a full heat exchange piping with both heat exchange and moisture absorbing functions, it is through the periodic positive and reverse directional pumping fluid to allow the temperature and humidity saturation degrees differences between fluid and desiccant material being insertingly installed or coated on the heat exchanger, or between the full heat exchanger having concurrent moisture absorbing function and fluid to be changed thereby promoting the dehumidification effect; 3) The impurities brought in by the fluid flow at previous flow direction are discharged by the single flow-circuit fluid of periodic positive and reverse directional pumping thereby reducing the disadvantages of impurity accumulations at fixed flow direction.
For the single flow circuit heat exchange device for periodic positive and reverse directional pumping of the present invention, the conventional heat exchange device or full heat exchange device is installed with the bidirectional fluid pumping device (123) for periodic positive and reverse directional pumping, and the periodic fluid direction-change operative control device (250) for operatively controlling the bidirectional fluid pumping device (123) so as to allow the fluid originally pumped in fixed flow direction appear periodically alternative flow directional change, wherein:
The bidirectional fluid pumping device (123): It is constituted by 1) the fluid pumping device capable of producing positive pressure to push fluid; 2) the fluid pumping device capable of producing negative pressure to attract fluid; or 3) the fluid pumping device having both functions of producing positive pressure to push fluid and negative pressure to attract fluid for pumping gaseous or liquid state fluids, wherein the fluid pump is driven by electric motor, engine power, or mechanical or electric power converted from other wind power, thermal energy, temperature-difference energy, or solar energy, etc;
According to above said definitions on operating functions, the selectable embodiments of said bidirectional fluid pumping device (123) include the following:
1. It is by adopting at least one bidirectional pumping fluid pump to suck and discharge the fluid, wherein flow direction of the fluid is periodically changed by periodically operating the pump in positive or reverse direction; or
2. It is constituted by at least two unidirectional fluid pumps of different pumping directions in series connection to constitute bidirectional fluid pumping device (123) for periodically alternatively pumping to periodically exchange the fluid flow direction; or
3. It is constituted by two unidirectional fluid pumps of different pumping directions in parallel connection for periodic alternatively pumping to periodically exchange the fluid flow directions, wherein if the pumps has no static anti-reverse flow characteristics, they can be respectively series connected with an unidirectional valve to avoid reverse flow; therefore the two pumps of different pumping directions are alternatively pumped to periodically exchange the fluid flow directions; or
4. It is constituted by at least one unidirectional fluid pump and four controllable switch type fluid valves in bridge type combination, wherein the fluid flow direction is periodically changed by alternatively operatively control two fluid valves to open and the other two fluid valves to close;
The periodic fluid direction-change operative control device (250): It is constituted by electromechanical components, solid state electronic components, or microprocessors and relevant software and operative control interfaces to operatively control the bidirectional fluid pumping device (123) for periodically changing the flow direction of the fluid passing through heat exchange device or full heat exchange device thereby operatively controlling the temperature difference distribution status between fluid and heat exchanger;
The timing for fluid periodic flow direction change can be 1) the open loop type operative control by presetting the direction-change period of fluid flow; or 2) the closed loop type operative control by detecting the temperature difference between fluid and heat exchanger at setting locations for periodic closed loop fluid flow direction change timing operative control; or 3) randomly manual change.
Said periodic positive and reverse directional pumping fluid function being applied for the full heat exchange device having heat exchanger being insertingly installed or coated with desiccant material, or the heat exchanger being full heat exchanger itself having concurrent moisture absorbing function is through the fluid having two different flow directions to pass through the full heat exchanger inside heat exchange device to change the distribution status of the temperature and humidity saturation degree differences between the fluid and full heat exchanger along with the flow direction of the fluid;
Further, the bidirectional pumping device (123) of the single flow circuit heat exchange device for periodic positive and reverse directional pumping can be selected to be constituted by two unidirectional fluid pumps having different pumping direction in series connection to constitute the function of fluid bidirectional pumping device (123);
Said periodic positive and reverse directional pumping fluid function being applied for the full heat exchange device having the heat exchanger being insertingly installed or coated with desiccant material, or the heat exchanger being full heat exchanger itself having concurrent moisture absorbing function is through the fluid having two different flow directions to pass through the full heat exchanger inside heat exchange device to change the distribution status of the temperature and humidity saturation degree differences between the fluid and full heat exchanger along with the flow direction of the fluid;
The heat exchanger or full heat exchanger of the single flow circuit heat exchange device for periodic positive and reverse directional pumping is embodied to have the following characteristics: 1) it is of the tubular structure in linear or other geometric shapes; 2) it is constituted by the multi-layer structure having fluid path for passing gaseous or liquid state fluids; or 3) it is constituted by one or more than one fluid path in series connection, parallel connection or series and parallel connection.