EP2912451A2

Methods, apparatus and systems for measuring snow structure and stability

Abstract

This record has no abstract on file.

Term

Projected expiry 25 October 2033.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

71 claims: 12 independent, 59 dependent

  1. 1
    Claims of equivalent WO 2014066852 A2 CLAIMS 1. An apparatus for measuring snow structure and stability comprising:a pole having a length, a first end and a second end;a sensing unit located at the first end of the pole, the sensing unit comprising a head shaped for probing a layer of snow, the sensing unit configured to sense a resistance to penetration;a range sensor configured to measure a distance between the range sensor and a surface of the layer of snow: and a processor configured to determine a depth of penetration based on the distance measured by the range sensor and the length of the pole;and determine a profile of penetration resistance according to depth based on the resistance to penetration sensed by the sensing unit.
  2. 18
    21. A method comprising:receiving, at a mobile device, a first set of data comprising a first profile of snow layer hardness according to depth, a first geographic location at which the first profile was measured, and a first date at which the first profile was measured;transmitting, from the mobile device, the first set of data to a central server via a wireless network;receiving, at the mobile device, a second set of data from the central server via the wireless network, wherein the second set of data includes a second profile of snow layer hardness according to depth, a second geographic location at which the second profile was measured, and a second date at which the second profile was measured: storing, at the mobile device, the first set of data and the second set of data in memory;displaying, at the mobile device, an area map with a first marker corresponding to the first profile indicating the position of the first geographic location and a second marker corresponding to the second profile indicating the position of the second geographic location;recei v ing, at the mobile device, user inpui selecting one of the markers;and displaying, in response to the user input, the profile corresponding to the selected marker.
  3. 23
    26. A mobile device comprising:a display screen;a memory;a communication module configured to communicate with a central server via a wireless network;and a processor configured to receive a first set of data comprising a first profile of snow layer hardness according to depth, a first geographic location at which t e first profile was measured, and a first date at which the first profile was measured;send the first set of data to the central server via the communication module;receive from the central server via the communication module a second set of data comprising a second profile of snow layer hardness according to depth, a second geographic location at which the second profile was measured, and a second date at which the second profile was measured;store the first set of data and the second set of data in the memory;display on the display screen an area map with a first marker corresponding to the first profile indicating the position of the first geographic location and a second marker corresponding to the second profile indicating the position of the second geographic location: receive user input selecting one of the markers;and display, in response to the user input, the profile corresponding to the selected marker. 2.7. The mobile device of claim 2.6, wherein the first set of data is received from a measurement device via a short-range wireless communication fink. . The mobile device of claim 26, wherein the first set of data comprises at least one of a first profile of snow temperature as a function of depth, a first profile of grain size as a function of depth, first local ambient temperature, a first humidity, a first slope aspect, and a first inclination, and wherein the second set of data includes at least one of a second profile of snow temperature as a function of depth, a second profile of grain size as a function of depth, a second local ambient temperature, a second humidity, a second slope aspect, and a second inclination.
  4. 26
    31. A method comprising:receiving, at a central server, from a plurality of mobile devices, a plurality of data sets, wherein each data set comprises a profile of snow layer hardness according to depth, a geographic location at which the profile was measured, and a date at which the profile was measured;storing, at the central server, the received data sets;analyzing, at the central server, the plurality of data sets to determine an avalanche risk at a geographic area;and transmitting, from the central server, at least one of the plurality of data sets and the avalanche risk to at least one of the plurality of mobile devices.
  5. 31
    36. A server comprising:a memory for storing data;an interface configured to communicate with a plurality of mobile devices via a wireless network;and a processor configured to receive, via the interface, a plurality of data sets, wherein each data set includes a profile of snow layer hardness according to depth, a geographic location at which the profile was measured, and a date at which the profile was measured;store the received data sets in the memory;analyze the plurality of data sets to determine an avalanche risk at a geographic area;and transmit, via the interface, at least one of the plurality of data sets and the avalanche risk to at feast one of the plurality of mobile devices.
  6. 36
    41. An apparatus for measuring snow structure and stability comprising:a pole having a length, a first end and a second end;a sensing unit located at the first end of the pole, the sensing unit comprising a head shaped for probing a layer of snow, the sensing unit configured to sense a temperature of the layer of snow;a range sensor configured to measure a distance between the range sensor and a surface of the layer of snow;and a processor configured to determine a depth of penetration based on the distance measured by the range sensor and the length of the pole;and determine a profile of snow layer temperature according to depth based on the temperature sensed by the sensing unit.
  7. 49
    54. A method for measuring snow structure and stability comprising:(a) sensing, at a probe while being inserted progressively deeper into a snow layer, a temperature of the snow layer;(b) measuring a depth of penetration based on the distance measured by a range sensor;and (c) repeating steps (a)-(b) to determine a profile of snow layer temperature according to depth based on the sensed temperature and the measured depth of penetration,
  8. 55
    60. An apparatus for measuring snow structure and stability comprising:a pole having a length, a first end and a second end;a sensing unit located at the first end of the pole, the sensing unit comprising a head shaped for probing a layer of snow, the sensing unit configured to measure a size of snow grains within the layer of snow;a range sensor configured to measure a distance between the range sensor and a surface of the layer of snow;and a processor configured to determine a depth of penetration based on the distance measured by the range sensor and the length of the pole;and determine a profile of snow grain size according to depth based on the measured size of snow grains measured by the sensing unit.
  9. 59
    64. The apparatus of ciaim 63, wherein the sensing unit measures the size of snow grains based on changes in the measured resistance to penetration resulting from loading and rupturing of individual bonds between snow grains.
  10. 60
    65. The apparatus of ciaim 60, wherein the sensing unit comprises a tip cylinder, a resistance sensing element disposed within the tip cylinder, and a weather-sealing filler which fills a space between the resistance sensing element and the tip cylinder, wherein the weather- sealing filler is configured to deform to allow the resistance sensing element to displace.
  11. 61
    66. The apparatus of ciaim 60, comprising an optical sensor configured to measure a distance of displacement, and wherein the processor is configured to determine the depth of penetTation based at least in part on the distance of displacement measured by the optical sensor.
  12. 68
    73. A method for measuring snow structure and stability comprising:(a) measuring, at a probe while being inserted progressively deeper into a snow layer, a size of snow grains within the snow layer;(b) measuring a depth of penetration based on the distance measured by a range sensor;and (c) repeating steps (a)-(b) to determine a profile of snow grain size according to depth based on the measured size of snow grains and the measured depth of penetration.