Claims
- 1. A system incorporating at least one durable, dimensionally stable anode to facilitate employing energy in a pre-specified pattern and pre-specified cycle for the purpose of dehydrating a structure composed at least in part of porous material, to include weakening said structure to facilitate demolition thereof, wherein said energy sets up an osmotic flow of moisture.
- 2. The system of claim 1 in which said system operates with pre-specified parameters including, but not limited to, a pre-specified pulse train of energy at a pre-specified amplitude level in said pre-specified cycle for a pre-specified time, wherein setting said pre-specified pulse train, pre-specified amplitude, and pre-specified cycle is done by relating measurements taken from said structure and its surrounding environment to known data.
- 3. The system of claim 2 in which said pre-specified parameters are selected with the further objective of eliminating damaging electrical shock to workers installing and operating said system.
- 4. The system of claim 2 in which said pre-specified pulse train comprises a first positive DC voltage pulse of a first pre-specified duration, a second negative DC voltage pulse of a second pre-specified duration, and a zero DC voltage period of a third pre-specified duration.
- 5. The system of claim 4 in which said second pre-specified duration is less than said first pre-specified duration.
- 6. The system of claim 4 in which said third pre-specified duration is less than said first pre-specified duration and greater than said second pre-specified duration.
- 7. A system for dehydrating at least part of a structure composed of porous material, to include weakening said porous material to facilitate demolition of at least part of said structure, comprising:
at least one durable, dimensionally stable anode, wherein said at least one anode is in electrical communication with said at least part of said structure; at least one cathode, wherein said at least one cathode serves to complete a circuit between said at least one anode and a power supply; and at least one pathway between each said at least one anode and said at least one cathode, wherein said at least one pathway at least conducts electrical energy that facilitates establishing an electro-osmotic flow of moisture within said structure, and wherein said system is operated with pre-specified parameters including but not limited to: a pre-specified pattern of disposition of said at least one anodes and said at least one cathodes, with said energy provided in the form of a pulsed DC voltage having at least one pre-specified voltage level, at least one pre-specified cycle of pulses, at least one pre-specified number of pulses in said pre-specified cycle, at least one pre-specified type of pulses in said pre-specified cycle, and at least one pre-specified pulse duration for each said pulse in said pre-specified cycle.
- 8. The system of claim 7 in which said porous material is composed primarily of concrete.
- 9. The system of claim 7 in which said at least one cathode is a rod in electrical communication with the earth.
- 10. The system of claim 7 in which said at least one durable, dimensionally stable anode is an electrically conducting wire embedded in said at least part of said structure,
- 11. The system of claim 10 in which said coating is a catalytic coating comprising material selected from the group consisting essentially of: iridium, oxides of iridium, tantalum, oxides of tantalum, niobium, oxides of niobium, titanium, oxides of titanium, precious metals, oxides of precious metal, and combinations thereof.
- 12. The system of claim 10 in which said valve metal substrate comprises material selected from the group consisting essentially of: niobium, tantalum, titanium, alloys of niobium, alloys of tantalum, alloys of titanium, and combinations thereof.
- 13. The system of claim 10 in which the resistivity of said coating is less than about 0.002 ohm-cm, the bond strength of said coating is greater than about 50 MPa, and said coating is capable of sustaining a current density of about 100 A/m2 at about 65° C. for 20 years.
- 14. The system of claim 7 in which said at least one durable, dimensionally stable anode is an electrically conducting coating on at least one surface of said at least part of said structure,
- 15. The system of claim 7 in which said pre-specified parameters are selected with the further objective of eliminating damaging electrical shock to workers installing and operating said system.
- 16. The system of claim 7 in which said pre-specified cycle comprises:
a first pulse having a first pre-specified sign, a first pre-specified duration and a pre-specified amplitude; a second pulse having a second pre-specified sign opposite of said first pre-specified sign, a second pre-specified duration and said pre-specified amplitude; and an off period having a third pre-specified duration, wherein said pre-specified values are chosen based on measurements taken on the structure to be demolished and said structure's immediate environment whereupon said measurements are compared to known data.
- 17. The system of claim 16 in which said first pre-specified sign is positive and said second pre-specified sign is negative.
- 18. The system of claim 17 in which said second pre-specified duration is less than said first pre-specified duration.
- 19. The system of claim 17 in which said third pre-specified duration is less than said first pre-specified duration and greater than said second pre-specified duration.
- 20. The system of claim 7 in which said energy is provided at a level of about at least 4.4 A/m2 (400 mA/ft2) of surface area of said durable, dimensionally stable anode,
- 21. A method for weakening a structure composed at least in part of porous material via use of an electro-osmotic system, comprising:
measuring selected parameters of said structure and said structure's surrounding environment; comparing said selected parameters to known data; establishing operating parameters of said electro-osmotic system; connecting said electro-osmotic system to at least part of said porous material in said structure in accordance with said established operating parameters; and establishing an osmotic flow of moisture within at least some of said porous portion of said structure using said established operating parameters to operate said electro-osmotic system, wherein said osmotic flow dehydrates said at least part of said porous material in said structure, and wherein said dehydration may be carried to an extent to cause weakening said structure to facilitate demolition thereof.
- 22. The method of claim 21 in which said electro-osmotic system comprises the system of claim 1.
- 23. The method of claim 21 in which said electro-osmotic system comprises the system of claim 7.
STATEMENT OF GOVERNMENT INTEREST
[0001] The invention described herein may be manufactured and used by or for the Government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.