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DEPARTMENT OF THE INTERIOR
John Barton Payne, Secretary
United States Geological Survey
George Otis Smith, Director
WATER-SUPPLY Paper 470
GROUND WATER IN THE NORWALK, SUFFIELD,
AND GLASTONBURY AREAS
CONNECTICUT
BY
HAROLD S. PALMER
Prepared in cooperation with the
CONNECTICUT GEOLOGICAL AND NATURAL HISTORY SURVEY
Herbert E. Gregory, Superintendent
WASHINGTON
GOVERNMENT PRINTING OFFICE
1920
Qass.
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DEPARTMENT OF THE INTERIOR
John Barton Paynk, Secretary
United States Geological Survey
' George Otis Smith, Director
Water-Supply Paper 470
GROUND WATER IN THE NORWALK, SUFFIELD,
AND GLASTONRURY AREAS
CONNECTICUT
BY
HAROLD S. PALMER
Prepared in cooperatioB wifh the
CONNECTICUT GEOLOGICAL AND NATURAL HISTORY SURVEY
Herbert K. Gregory, Superintendent
WASHINGTON
GOVERNMENT PRINTING OFFICE
1920
i LIBRARY OF CONGRESS
I JAN261921
i DOCUMENTis UiVlSlOM
'1"
CONTENTS.
Pagrc
Introduction 7
Problems ivlating- to water supplies in Connoctient . 7
Water-supply investij?ations S
Sourci' and charaotev of data '•)
Geography : :i_ 30
Topography 10
Xorwalk area lo
Suffield area 10
(Hastonbury ai'ea 10
Climate 11
Surface waters 12
Woodlands IT)
Population __„ 10
Geologic history 17
Water-bearing formations lo
Glacial drift 2o
Till 20
Stratified drift 22
Criteria for differentiation of till and stratified drift 24
Occurrence and ciiTulation of ground water 24
Triassic sedimentary rocks 27
Distribution 27
Lithology and stratigraphy 27
Occurrence of ground water 2s
Water in pores 2s
Water in bedding planes 2S
Water in joints 20
Water in fault zones 2!)
Trap rocks 20
Distribution 29
Lithology and occui'rence of ground water 20
Crystalline rocks 30
Distribution ^ 3(»
Lithology V><)
Schists 30
Gneisses of igneous origin 30
Gneisses' of complex origin 31
Occurrence and circulation of ground water 31
Water in lamellar spaces 31
"Water in joints and along faults 31
Limestone 32
Distribution 32
Lithology and stratigraphy 32
Occurrence of groiuid watei- 32
4 CONTEXTS.
Page.
Artesian (■(Hiditioiis 32
Springs 3-1
Seepage springs 34
Stratum springs ; 34
Fault and joint springs . 34
Relation of wells to springs 34
Recoverj" of ground water 35
Dug ^vells . 35
Construction 35
Lifting devices 35
Bailing devices 35
Pumps 1 36
Siphon and gravity rigs 39
Rams 39
Windmills and air-pressure tanks 40
Yields of dug wells 41
Infiltration galleries 43
Driven wells , : : 43
Drilled wells 44
Springs 46
Ground water for public supplj' 47
Introduction _i 47
Typical plants 50
Greenfield, Mass 50
Hyde Park, Mass 50
Lowell, Mass 50
Xewburyport, Mass 52
Newton, Mass 52
Plainville, Conn : 52
Quality of ground water 52
Analyses and assays . 52
Probable accuracy of analyses and assays 55
Chemical character of water ^ S'l
Interpretation of analyses and assays 57
Contamination 60
Tabulations 62
■ Temperature of ground water ^
Detailed descriptions of towns 66
Darien 66
New Canaan 74
Norwalk 83
Ridgefield 94
Weston 104
Westport 109
Wilton 117
East Granby 124
Enfield 131
Sufl;ield 139
Windsor Locks 148
Glastonbury ^ 152
Marlboro 161
Index 167
ILLUSTRATIONS.
Page.
Plate I. Map of Connecticnt sli<)\\ius pbysioj^raphic divisions and areas
eoveri'd by wator-supply papers of the I'liited States Geo-
logical Survey S
II. Topographic map of the Norwalk area showing distribution of
woodlands and locations of wells and springs cited In pocket.
III. Geologic map of the Norwalk area In pocket.
IV. Topographic map of the Sullield area showing distribution of
woodlands and locations of wells and springs cited In pocket.
V. Geologic mai) of the SulHeld area In pctcket.
VI. Topographic map of the Glastonbury area showing dislribution
of woixllarids and locations of wells and springs cited In pocket.
VII. Geologic map of the Glastonbury area In pocket.
VIII. A, Estuary in Darien, Conn.; B, Section of sti'atiiietl drift,
Darien, Conn 66
IX. A, Plant of the Tokeneke Water Co., Darien. Conn.; B, Sti-ati-
tietl- drift plain, East Granby. Couu 72
X. A, Offset trap ridges near Tariffville, Conn.; i?. Flowing v.ell
drilled in sandstone, East Granby, Conn 126
XL A, Sand pit in stratilied drift, Thompsonville, Entield, Conn. ; B,
Stratilied drift overlying till, Thompsonville, Enheld, Conn 134
XII. Massive granite gneis.s, East Glastonbury. Conn 154
Figure 1. Diagram showing mean monthly precipitation at Norwalk,
Conn., 1892-1913 12
2. Diagram showing mean monthly precipitation at Hartfor<l,
Conn., 1846-1853 and 1S68-190S 13
3. Diagram showing mean monthly precipitation at ^Nliddletown.
Conn., 18r)8-1902 13
4. Diagram showing tlie usual relation of the water table to the
land surface on hills and in valleys 26
5. Diagram showing the relation of the water table on till-
covered hills to the water table in valleys of stratified drift
in glaciated regions 26
6. Diagram showing conditions under which artesian wnters
may exist in the Ti-iassic sedimentary rocks in Connecticut^ 33
7. Diagrtim showing two types of installation of "house
pumps '' 37
8. Diagram showing siphon Avell .nnd domestic waterworks 38
9. Graph showing the recovery of the well of J. S. Dewey after
pumping 40
10. Graph showing relation of inflow to drawdown in the well of
J. S. Dewey 42
11. Diagram showing two types of air lifts 45
12. Graph showing average composition of waters analyzed,
grouped according to water-bearing formations 63
5
b ILLUSTEATIOFS.
Page.
Figure 13. Hypotlietical section of Long Neck Point, Darien 60
14. Profile across New Canaan (A-A' on Pis. II and III), show-
ing iniclulating plateau and the valleys cut below it Tt;
1.5. Profile across Eidgefield (section C-C on Pis. II and III)___ 9G
16. Projected north-south profiles across Wiltoii, shelving terraced
character of the plateau 110
17. Profile across- Wilton (section B-B' on Pis. II and -III), show-
ing dissection of the terraced plateau 110
18. Geologic section across East Granby and Suffield (section
D-D' ou PI. V) . 120
GROUND WATER IN THE NORWALK, SUFFIELT), AND
GLASTONBURY AREAS, CONNECTICUT.
By Harold S. Palmei?.
INTRODUCTION.
PROBLEMS RELATING TO WATER SUPPLIES IN CONNECTICITT.
The census of 1910 reported the popuhition of Connecticut as
1,114,756. The area of the State is 5,004 square miles. The average
density of population is therefore about 220 to the square mile, but the
distribution of population is markedly uneven. More than 53 per
cent of the inhabitants are gathered into 19 cities, each containing
over 10,000. The cities are rapidly increasing in population, but
parts of the State — about 24 per cent of the towns — are more
sparsely settled to-day than in 1860. To speak broadly, the people
of Connecticut are engaged in two occupations — manufacturing and
mixed agriculture. Manufacturing is increasing at a rapid rate ;
agriculture at a slower rate, but Avith a distinct tendency toward
specialization. The fine scenerj^ of parts of the State has led to the
development of country estates and shore homes.
As the stage of cultui-e in a region rises it is necessary progres-
sively to improve and increase the water supplies. Wild tribes are
satisfied with the waters of springs and streams. Pastoral peoples
need somewhat more water. Agricultural regions must have water
at points where it may be conveniently used ; wells are made, springs
are improved, and surface waters diverted to provide water at the
points of utilization. In some arid regions extensive works are
constructed to supply water for irrigation, as well as for domesti<'
use and for watering stock. Industrial and mercantile communities,
in which the population is concentrated in cities, demand a great
deal of water, not only for human consumption Imt also for innum-
erable technical purposes, such as for washing fabrics, for cooling
metals, and for generating steam in boilers.
An annual precipitation of 45 inches gives Connecticut in the
aggregate large supplies of both surface and ground water, but the
precipitation is sometimes deficient through periods of several weeks
or months. Consequently farmers must endure periods of drought,
7
8 GROUND WATER IN NORWALK AND OTHER AREAS, CONN.
manufacturers iiiiist provide against fluctuating water power, and
the inhabitants of congested districts must arrange for adequate
public supplies. With increase in population and diversification of
interests conflicts have already arisen between water-pov/er users
and domestic consumers, as well as between towns, for the right
to use a particular stream or area. Demands are also being made
hj prospective users of the waters for irrigation and drainage. The
quality of water acquires new importance with the effort to improve
the healthfulness of the State and to reclaim the waters now
polluted by factory wastes and sewage. The necessitj^ of obtaining
small but unfailing supplies of potable water for the farm and for
the village home furnishes an additional problem, for the condition
of many private supplies in Connecticut is deplorable.
To meet the present situation and to provide for the future,
State-wide regulations should be adopted. Obviously the first step
in the solution of the Connecticut water problem is to make a com-
prehensive study of both surface and ground waters to obtain
answers to the following questions : How nuich water is stored in
the gravel and sand and bedrock of the State?. How much does
the amount fluctuate with the seasons? What is tlie quality of the
water ? How may it best be recovered in large and small amounts ?
What is the expense of procuring it? How much Avater may the
streams of the State be relied upon to furnish ? To what extent are
the stream waters polluted? How may the pollution be remedied?
To what use should each stream be devoted? What is the equitable
distribution of ground and surface water among the conflicting
claimants — industries and communities ?
WATER-SUPPLY INVESTIGATIONS.