FIELD: construction.
SUBSTANCE: invention relates to the field of construction, namely to digital engineering seismic stations, that can also be used for recording seismic events at construction projects in case of strong earthquakes, that have a monitoring system of the technical condition of buildings or structures. Station includes digital three-channel recorders of seismic vibrations with analog-to-digital converters and information carriers, an analyzing device, a control device and communication lines. Single memory block, a switching unit of the operating mode and a registration activation unit are additionally entered into the station, while a part of the digital three-channel recorders is made triggering, and each analog-to-digital converter connected to a quartz resonator is made with a comparator. Single memory block is connected to the analog-to-digital converters. Switching unit of the operating mode is connected to the analog-to-digital converters and to the communication line between the comparators of the analog-to-digital converters and the analyzing device and switches off the analog-to-digital converters of the starting recorders of earthquake vibrations and breaks the signal transmission line from comparators to the analyzing device while monitoring the technical condition of buildings or structures. Registration activation unit is connected to the analog-to-digital converters and a single memory unit and transmits a signal for simultaneous activation of all digital recorders of earthquake vibrations and simultaneous switching of transmission of the recorded digital information into the single memory block. Three-channel digital recorders have a maximum acceleration measurement range of 2.10-5–14 m/s2 at a frequency range of 0.1–200 Hz.
EFFECT: expansion of functional capabilities.
1 cl, 1 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD OF MULTICHANNEL RECORDING OF SEISMIC VIBRATIONS AT THE ENGINEERING SEISMIC STATION | 2017 |
|
RU2654831C1 |
SEISMIC DEVICE FOR MEASURING DYNAMIC IMPACTS IN MONITORING THE TECHNICAL CONDITION OF LOADBEARING BUILDINGS AND STRUCTURES | 2017 |
|
RU2655462C1 |
METHOD OF MULTICHANNEL REGISTRATION OF SEISMIC VIBRATIONS AT ENGINEERING AND SEISMOMETRIC STATION | 0 |
|
SU1442956A1 |
AUTOMATED INTEGRATED SYSTEM FOR MONITORING REMOTE OBJECTS AND METHOD OF MONITORING REMOTE OBJECTS | 2023 |
|
RU2820412C1 |
SELF-ASCENDING PORTABLE BOTTOM SEISMIC STATION NOT REQUIRING LEAVING THE LOAD ON THE SEA BOTTOM | 2022 |
|
RU2796944C1 |
METHOD FOR SEISMIC PROSPECTING HYDROCARBONS AND METHOD OF DETERMINING ATTITUDE OF PRODUCING FORMATIONS ON HYDROCARBONS AND SEISMIC STATION FOR REALISING SAID METHOD | 2010 |
|
RU2433425C2 |
INDEPENDENT BOTTOM STATION FOR SEISMIC OBSERVATIONS | 2010 |
|
RU2438149C2 |
METHOD FOR SEISMIC EXPLORATION WHEN SEARCHING FOR HYDROCARBONS AND SEISMIC SYSTEM FOR REALISING SAID METHOD | 2010 |
|
RU2431868C1 |
START-UP DEVICE FOR TECHNICAL SEISMIC PROSPECTING STATION | 0 |
|
SU1081590A1 |
METHOD FOR CONTINUOUS MONITORING OF PHYSICAL STATE OF BUILDINGS AND/OR STRUCTURES AND APPARATUS FOR REALISING SAID METHOD | 2010 |
|
RU2461847C2 |
Authors
Dates
2018-05-22—Published
2017-06-23—Filed