Claims
- 1. A method for pumping fluid, comprising:
pinching a portion of an elastic element in a way which increases a pressure in a first end member of the elastic element more than a pressure in a second end member of the elastic element without valve action, to cause a pressure differential, wherein the end members have different hydroimpedance; and using said pressure differential to move fluid between said first and second end members.
- 2. The method according to claim 1, wherein said elastic element is an elastic tube.
- 3. The method according to claim 1, wherein the step of pinching the elastic element is carried out by compressing a portion of the elastic element.
- 4. The method according to claim 3, wherein the step of compressing is carried out by a pneumatic pincher.
- 5. The method according to claim 3, wherein the step of compressing is carried out by electricity that is converted from body heat based on Peltier effects.
- 6. The method according to claim 3, wherein the step of compressing is carried out by electricity that is converted from mechanical motion of muscles based on piezoelectric mechanism.
- 7. The method according to claim 1, wherein the first end member has a diameter larger than a diameter of the elastic element.
- 8. The method according to claim 1, wherein the first end member has a diameter smaller than a diameter of the elastic element.
- 9. A valveless pump, comprising:
an elastic element having a length with a first end and a second end; a first end member attached to said first end of the elastic element and a second end member attached to said second end, wherein said first end member has an impedance different from an impedance of the second end member; and pressure change means for inducing a pressure increase and a pressure decrease into the first and second end members, in a way which causes a pressure difference between said first and second end members, and causes a pumping action based on said pressure difference.
- 10. The valveless pump according to claim 9, wherein the impedance of the first end member is different from an impedance of the elastic element.
- 11. The valveless pump according to claim 9, wherein the elastic element is an elastic tube.
- 12. The valveless pump according to claim 9, wherein the first end member has a diameter larger than a diameter of the elastic element.
- 13. The valveless pump according to claim 9, wherein the first end member has a diameter smaller than a diameter of the elastic element.
- 14. The valveless pump according to claim 9, wherein said pressure change means comprises compressing a portion of the elastic element.
- 15. The valveless pump according to claim 9, wherein said pressure change means comprises compressing a portion of the elastic element by a pincher.
- 16. The valveless pump according to claim 9, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from body heat based on Peltier effects.
- 17. The valveless pump according to claim 9, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from mechanical motion of muscles based on piezoelectric mechanism.
- 18. A valveless pump, comprising:
an elastic element having a length with a first flexible wall segment and a spaced apart second flexible wall segment; a first external chamber mounted over the first flexible wall segment and a second external chamber mounted over the second flexible wall segment, wherein a pressure is applied through the first external chamber onto the first flexible wall segment that is different from a pressure applied onto the second flexible wall segment through the second external chamber; and pressure change means for inducing a pressure increase and a pressure decrease into the first and second flexible wall segments, in a way which causes a pressure difference between said first and second segments, and causes a pumping action based on said pressure difference.
- 19. The valveless pump according to claim 18, wherein the elastic element is an elastic tube.
- 20. The valveless pump according to claim 18, wherein the pressure change means comprises compressing a portion of the elastic element, wherein said portion is between the first and second flexible wall segments.
- 21. The valveless pump according to claim 18, wherein the pressure change means comprises compressing a portion of the elastic element by a pincher, wherein said portion is between the first and second flexible wall segments.
- 22. The valveless pump according to claim 18, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from body heat based on Peltier effects, wherein said portion is between the first and second flexible wall segments.
- 23. The valveless pump according to claim 18, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from mechanical motion of muscles based on piezoelectric mechanism, wherein said portion is between the first and second flexible wall segments.
- 24. A valveless pump, comprising:
an elastic element having a length with a first end and a second end; a first pressure changing element disposed at about the first end and a second pressure changing element disposed at about the second end; and pressure change means for inducing a pressure increase and a pressure decrease into the first and second ends, in a way which causes a pressure difference between said first and second ends, and causes a pumping action based on said pressure difference, wherein the first and second pressure changing elements are capable of producing partial or complete pinch-off to reflect waves generated by said pressure change means.
- 25. The valveless pump according to claim 24, wherein the elastic element is an elastic tube.
- 26. The valveless pump according to claim 24, wherein the pressure change means comprises compressing a portion of the elastic element.
- 27. The valveless pump according to claim 24, wherein the pressure change means comprises compressing a portion of the elastic element by a pincher.
- 28. The valveless pump according to claim 24, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from body heat based on Peltier effects.
- 29. The valveless pump according to claim 24, wherein the pressure change means comprises compressing a portion of the elastic element by electricity that is converted from mechanical motion of muscles based on piezoelectric mechanism.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims the benefit of provisional application Ser. No. 60/428,126, filed Nov. 21, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60428126 |
Nov 2002 |
US |