1. A subsea well containment and intervention apparatus, comprising:
a. a frame having an open central well;
b. a plurality of pilings attached around the periphery of the frame for securing the apparatus on the seafloor;
c. a plurality of tools mounted on the frame for working on the subsea well; and
d. means for powering and controlling the tools.
2. The subsea well containment and intervention apparatus of claim 1, wherein the pilings are suction pilings.
3. The subsea well containment and intervention apparatus of claim 2, further comprising at least one evacuation pump mounted on each piling.
4. The subsea well containment and intervention apparatus of claim 1, wherein the means for powering and controlling the tools comprises an umbilical line connector for receiving a power and control umbilical line from a support vessel.
5. The subsea well containment and intervention apparatus of claim 1, wherein the tools for working on the subsea well are movably mounted on the frame.
6. The subsea well containment and intervention apparatus of claim 1, further comprising at least one buoyancy module mounted on the frame.
7. A subsea well containment and intervention apparatus, comprising:
a. a frame having an open central well;
b. a plurality of suction pilings attached around the periphery of the frame for securing the apparatus on the seafloor;
c. a plurality of tools mounted on the frame for working on the subsea well; and
d. an umbilical line connector for receiving a power and control umbilical line from a support vessel for powering and controlling the tools.
8. The subsea well containment and intervention apparatus of claim 7, further comprising at least one evacuation pump mounted on each piling.
9. The subsea well containment and intervention apparatus of claim 7, wherein the tools are movably mounted on the frame.
10. The subsea well containment and intervention apparatus of claim 7, further comprising at least one buoyancy module mounted on the frame.
11. The subsea well containment and intervention apparatus of claim 7, further comprising a plurality of lifting eyes attached to the frame.
12. A subsea well containment and intervention apparatus, comprising:
a. a frame having an open central well;
b. a plurality of suction pilings attached around the periphery of the frame for securing the apparatus on the seafloor;
c. at least one evacuation pump mounted on each piling;
d. a plurality of tools mounted on the frame for working on the subsea well, with at least one tool being movably mounted on the frame;
e. an umbilical line connector for receiving a power and control umbilical line from a support vessel for powering and controlling the tools.
13. The subsea well containment and intervention apparatus of claim 12, further comprising at least one buoyancy module mounted on the frame.
14. The subsea well containment and intervention apparatus of claim 12, wherein the frame is cross or X-shaped.
15. The subsea well containment and intervention apparatus of claim 12, further comprising a plurality of lifting eyes attached to the frame.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. An information processing apparatus for managing an image processing apparatus having a processing mode which involves processing related to an image and having a plurality of power control modes which do not involve processing related to the image, wherein the plurality of power control modes include a standby mode, and a low power mode which consumes power that is smaller than power consumed in the standby mode, the information processing apparatus comprising:
a specifying unit that specifies user identification information which identifies at least one of a user that uses the image processing apparatus and a department to which the user belongs;
a counting unit that counts a page outputting number for the processing mode;
a timing unit that times an operation time for each of the plurality of power control modes;
a memory unit that stores a power consumption amount per page for the processing mode, and a power consumption amount per unit time for each of the plurality of power control modes;
a calculation unit that calculates (i) a power consumption amount of the image processing apparatus for the processing mode by multiplying the power consumption amount per page stored by said memory unit and the page outputting number counted by said counting unit, and
(ii) a power consumption amount of the image processing apparatus for the plurality of power control modes by multiplying the power consumption amount per unit time stored by said memory unit and the operation time timed by said timing unit; and
a preparation unit that prepares statistical information concerning (i) the power consumption amount of the image processing apparatus for the processing mode calculated by said calculation unit, and (ii) the power consumption amount of the image processing apparatus for the power control mode calculated by said calculation unit,
wherein said preparation unit prepares the statistical information concerning the power consumption amount of the processing mode for the specified user identification information specified by said specifying unit and concerning the power consumption amount of the plurality of power control modes such that the power consumption amount of the plurality of power control modes is not associated with any user identification information.
2. The information processing apparatus according to claim 1, further comprising an output unit that performs an output of the statistical information for the specified user identification information prepared by said preparation unit when the user identification information is specified by said specifying unit.
3. The information processing apparatus according to claim 2, wherein said output unit sends the prepared statistical information concerning power consumption to a terminal apparatus external to the image processing apparatus as a markup language.
4. The information processing apparatus according to claim 2, wherein said output unit outputs the prepared statistical information concerning power consumption to a display unit during designated processing for designating the processing mode or during execution of the processing mode.
5. The information processing apparatus according to claim 1, wherein the processing mode is a copy mode or a printer mode.
6. An information output method for outputting information concerning power consumption in an image processing apparatus having a processing mode which involves processing related to an image and having a plurality of power control modes which do not involve processing related to the image, wherein the plurality of power control modes include a standby mode, and a low power mode which consumes power that is smaller than power consumed in the standby mode, the information output method comprising the steps of:
performing the following steps using a processor:
specifying user identification information which identifies at least one of a user that uses the image processing apparatus and a department to which the user belongs;
counting a page outputting number for the processing mode;
timing an operation time for each of the plurality of power control modes;
reading out power consumption amount per page data for the processing mode and power consumption amount per unit time data for each of the plurality of power control modes;
calculating (i) a power consumption amount of the image processing apparatus for the processing mode by multiplying the power consumption amount per page data read by said reading step and the page outputting number counted by said counting step, and (ii) a power consumption amount of the image processing apparatus for the plurality of power control modes by multiplying the power consumption amount per unit time data read by said reading step and the operation time timed by said timing step; and
preparing statistical information concerning (i) the power consumption amount of the image processing apparatus for the processing mode calculated by said calculating step, and (ii) the power consumption amount of the image processing apparatus for the plurality of power control modes calculated by said calculating step,
wherein said preparing step prepares the statistical information concerning the power consumption amount of the image processing mode for the specified user identification information specified by said specifying step and concerning the power consumption amount of the plurality of power control modes such that the power consumption amount of the plurality of power control modes is not associated with any user identification information.
7. The information output method according to claim 6, further comprising an output step for outputting of the statistical information for the specified user identification information prepared by said preparing step when the user identification information is specified by said specifying step.
8. The information output method according to claim 7, wherein said output step sends the prepared statistical information concerning power consumption to a terminal apparatus external to the image processing apparatus as a markup language.
9. The information output method according to claim 7, wherein said output step outputs the prepared statistical information concerning power consumption to a display unit during designated processing for designating the processing mode or during execution of the processing mode.
10. The information output method according to claim 6, wherein the processing mode is a copy mode or a printer mode.
11. A non-transitory computer readable storage medium having stored therein a program which is executed by an information processing apparatus for outputting information concerning power consumption in an image processing apparatus having a processing mode which involves processing related to an image and having a plurality of power control mode modes which do not involve processing related to the image, wherein the plurality of power control modes include a standby mode, and a low power mode which consumes power that is smaller than power consumed in the standby mode, the information program comprising the steps of:
specifying user identification information which identifies at least one of a user that uses the image processing apparatus and a department to which the user belongs;
counting a page outputting number for the processing mode;
timing an operation time for each of the plurality of power control modes;
reading out power consumption amount per page data for the processing mode and power consumption amount per unit time data for each of the plurality of power control modes;
calculating (i) a power consumption amount of the image processing apparatus for the processing mode by multiplying the power consumption amount per page data read by said reading step and the page outputting number counted by said counting step, and (ii) a power consumption amount of the image processing apparatus for the plurality of power control modes by multiplying the power consumption amount per unit time data read by said reading step and the operation time timed by said timing step; and
preparing statistical information concerning (i) the power consumption amount of the image processing apparatus for the processing mode calculated by said calculating step, and (ii) the power consumption amount of the image processing apparatus for the plurality of power control modes calculated by said calculating step,
wherein said preparing step prepares the statistical information concerning a power consumption amount of the image processing mode for the specified user identification information specified by said specifying step and concerning the power consumption amount of the plurality of power control modes such that the power consumption amount of the plurality of power control modes is not associated with any user identification information.